import bpy # Очистка сцены bpy.ops.object.select_all(action='SELECT') bpy.ops.object.delete(use_global=False) # Добавление плоскости для флага bpy.ops.mesh.primitive_plane_add(size=2, location=(0, 0, 0)) flag = bpy.context.object flag.name = "Korean Flag" # Применение текстуры флага Южной Кореи material = bpy.data.materials.new(name="FlagMaterial") material.use_nodes = True nodes = material.node_tree.nodes links = material.node_tree.links # Удаляем стандартный узел BSDF for node in nodes: nodes.remove(node) # Добавляем узел Image Texture image_texture = nodes.new(type='ShaderNodeTexImage') image_texture.image = bpy.data.images.load("//south_korea_flag.png") # Укажите путь к изображению флага image_texture.location = (-300, 300) # Узел Principled BSDF bsdf = nodes.new(type='ShaderNodeBsdfPrincipled') bsdf.location = (0, 300) # Узел Output output = nodes.new(type='ShaderNodeOutputMaterial') output.location = (300, 300) # Соединяем узлы links.new(image_texture.outputs['Color'], bsdf.inputs['Base Color']) links.new(bsdf.outputs['BSDF'], output.inputs['Surface']) # Присваиваем материал объекту flag.data.materials.append(material) # Добавление текста "Привет, Южная Корея!" bpy.ops.object.text_add(location=(0, -2, 0)) text = bpy.context.object text.data.body = "Hello, South Korea!" text.data.size = 0.5 text.data.extrude = 0.1 # Настройка камеры bpy.ops.object.camera_add(location=(0, -6, 2)) camera = bpy.context.object camera.rotation_euler = (1.2, 0, 0) bpy.context.scene.camera = camera # Настройка света bpy.ops.object.light_add(type='SUN', location=(5, -5, 5)) light = bpy.context.object # Рендеринг сцены bpy.context.scene.render.engine = 'CYCLES' bpy.context.scene.render.filepath = "//hello_south_korea.png" bpy.ops.render.render(write_still=True)
photograph, long range shot, fashion model, male, seated on a chair, hairstyle is silver undercut, wearing black horn-rimmed glasses, some shaven face, his attire consists of a black loose-fit rolled up sleeves with arm medium gothic design cross tattoo and lettering tattoo, dyed black denim pants, by Richard Avedon, Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, capture the model’s confident, solid grey background photo studio, gaze into the camera, model is expressed in realistic photo, high contrast, highlighted lighting effects --ar 9:16 --style raw --s 700 --v 6
photography, dynamic shooting, distance range, Egyptian man ,buzz cut , upper-body, staring into the camera, enjoyable and smile, Used camera is Sony a9 ll with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, Egyptian army clothing, The nameplate on the uniform reads "Soldier / Ahmed Farag El Mahlawy", autumnal beach, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw -- personalize c84qxg1 --stylize 500--v 1 6.
photography, dynamic shooting, distance range, woman, 40 years old, upper-body, staring into the camera, enjoyable and smile, Used camera is Sony α9 II with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, autumnal park, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw --personalize c84qxg1 --stylize 500 --v 6. 1
Generate this image: product editorial for fashion magazine. High resolution photograph. Shot by a professional photographer. A photorealistic image of exclusive facial cream jar with a sleek, silver cap, placed against a dark-to-light brown gradient background. The image must suggests luxury. The spot light is casting some shadows like natural sunlight. Minimalist aesthetic, subtle branding, showcases style and design innovation. Main studio Light set is a tall Softbox is lighting from the left. Style: realistic, product shot. Sony α9 II, FE 100-400mm f/4. 5-5. 6 GM OSS lens
photography, dynamic shooting, distance range, Egyptian man, , age 25 ,upper-body,setting is an open, minimalistic space with soft, neutral color scheme that accentuates the motion blur, sharply in focus, contrasting with the transient figures around him, highlighting the theme of stillness amidst chaos. street mood to keep the attention on the motion effect background,staring into the camera, enjoyable and smile, Used camera is Sony a9 ll with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, surrounded by a blurred motion of multiple people walking past him, movement, wearing black color loose fit hoodie and khaki jogger pants with red color Vans high- top sneakers, sub models is monochromatic red silhouette,, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw -- personalize c84qxg1 --stylize 500--v 1 6.
photography, dynamic shooting, distance range, woman, 40 years old, upper-body, staring into the camera, enjoyable and smile, Used camera is Sony α9 II with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, autumnal park, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw --personalize c84qxg1 --stylize 500 --v 6. 1
photograph, long range shot, fashion model, male, seated on a chair, hairstyle is silver undercut, wearing black horn-rimmed glasses, some shaven face, his attire consists of a black loose-fit rolled up sleeves with arm medium gothic design cross tattoo and lettering tattoo, dyed black denim pants, by Richard Avedon, Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, capture the model’s confident, solid grey background photo studio, gaze into the camera, model is expressed in realistic photo, high contrast, highlighted lighting effects --ar 9:16 --style raw --s 700 --v 6
photograph, front view, donald trump, standing on solid grey background, gaze into the camera, wrinkles on the forehead, by Richard Avedon style, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, wearing black suit with with white shirt and red tie, showing thumbs up realistic photography, high contrast --ar 9:16 --style raw
photograph, front view, donald trump, standing on solid grey background, gaze into the camera, wrinkles on the forehead, by Richard Avedon style, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, wearing black suit with with white shirt and red tie, showing thumbs up realistic photography, high contrast --ar 9:16 --style raw
photography, low shot, female skateboarder is captured mid-flight above a skatepark ramp, cap backward and flowing curly hair that defies gravity, fitted white long sleeves and dark green cargo jogger pants, skateboarder's feet are snug in pristine skate shoes, and their board is a canvas of adventure with colorful stickers and the tale-telling scuffs of a well-used deck, wheels show signs of a life ridden hard, bright blue sky, the sun casting a radiant outline around the airborne figure, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, realism light and shadows --ar 9:16 --s 500
focused man model, high resolution photograph, used camera Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, emulating a high-contrast, positioned straight on for a candid shot, natural sunlighting through a large window, wearing red polo t-shirt, looking left side, orange juice at the dinner table, high detailing, realistic, UHD --ar 9:16 --style raw --stylize 300
"Cena de filme bíblico épico: um guerreiro ferido "PAULO", vestindo uma armadura marcada por batalhas, avança por um deserto de areia movediça sob um céu carregado de trovões. Cada passo afunda (tribulação), mas em seu rastro, florescem cristais translúcidos que formam um caminho sólido (perseverança). À frente, uma escadaria íngreme de pedra lascada leva a um templo em ruínas, onde suas mãos cicatrizadas reconstroem lentamente os pilares (experiência). No topo, uma mulher idosa vestida como profetisa segura um pergaminho aberto com Romanos 5:3-5 escrito em hebraico antigo, enquanto um sol dourado rompe as nuvens, iluminando um vale verdejante repleto de fontes e crianças brincando (esperança). Ao fundo, uma pomba branca mergulha das alturas, deixando um rastro de luz que envolve o guerreiro. Estilo cinematográfico inspirado em 'Gladiador' e 'Ben-Hur', com iluminação Rembrandt, texturas hiper-realistas de metal enferrujado e pele suada, e simbolismos como correntes quebradas se transformando em grinaldas de flores."
"Cena de filme bíblico épico: um guerreiro ferido, vestindo uma armadura marcada por batalhas, avança por um deserto de areia movediça sob um céu carregado de trovões. Cada passo afunda (tribulação), mas em seu rastro, florescem cristais translúcidos que formam um caminho sólido (perseverança). À frente, uma escadaria íngreme de pedra lascada leva a um templo em ruínas, onde suas mãos cicatrizadas reconstroem lentamente os pilares (experiência). No topo, uma mulher idosa vestida como profetisa segura um pergaminho aberto com Romanos 5:3-5 escrito em hebraico antigo, enquanto um sol dourado rompe as nuvens, iluminando um vale verdejante repleto de fontes e crianças brincando (esperança). Ao fundo, uma pomba branca mergulha das alturas, deixando um rastro de luz que envolve o guerreiro. Estilo cinematográfico inspirado em 'Gladiador' e 'Ben-Hur', com iluminação Rembrandt, texturas hiper-realistas de metal enferrujado e pele suada, e simbolismos como correntes quebradas se transformando em grinaldas de flores."
Vídeo publicitario de 10 segundos, estilo cinematográfico. Escena 1 (0-4s): un profesor de mediana edad sentado en su mesa, agobiado, rodeado de pilas de exámenes en papel, post-its y una pizarra llena de tareas, luz fría y gris, cámara cerrada sobre su rostro cansado, ambiente caótico. Transición rápida tipo "flash" o disolución de luz cálida (4-5s). Escena 2 (5-10s): el mismo profesor, ahora relajado y sonriente, frente a un portátil abierto con una interfaz de IA limpia y minimalista, luz cálida y dorada, aula ordenada de fondo, gesto de alivio, plano final se mantiene estable unos segundos para dejar espacio a texto/logo en post-producción. Cámara estable, tono profesional pero cercano.
Specialized Bitumen Refining Plant Governorate: Anbar / Hit District Production Capacity: ( ) Tons/Day The city of Hit in the Anbar Governorate is considered one of the most famous areas in the world for its natural "bitumen springs," which have been used for thousands of years (dating back to the Babylonian and Assyrian eras). However, processing this bitumen for modern use requires technical steps to transform it from a raw material into a viable product for construction or industrial applications. Bitumen emerges from these springs as a highly viscous liquid mixed with sulfurous water, salts, and mud impurities. This "Natural Asphalt" differs from petroleum bitumen produced in refineries, and it can also appear in the form of rocky or spongy blocks mixed with mud. To obtain industrially usable products from this bitumen, specifically for: 1. Waterproofing (Felt/Membranes): Considered one of the best coating materials for building foundations to prevent moisture leakage due to its high resistance to hydrolysis. 2. Road Paving: Mixed with gravel and sand to produce asphalt concrete. It is characterized by exceptionally high cohesive strength compared to industrial bitumen. The natural bitumen from these springs must undergo several fundamental processing stages to become industrially viable: 1. Collection and Sedimentation: Bitumen is collected from the springs or quarry sites and left in designated basins to allow the sulfurous water to naturally separate (due to density differences). 2. Primary Heating: The raw bitumen is placed in large boilers to: a. Evaporate the remaining water. b. Reduce viscosity for easier handling. 3. Filtration and Purification: The heated bitumen is screened to remove solid impurities such as gravel, dirt, and suspended organic matter. 4. Secondary Heating and Cooking: The temperature of the bitumen is raised, improving agents are added, and it is prepared for the vacuum distillation process. 5. Vacuum Distillation: The distillation process is conducted under low pressure (vacuum pressure), which allows for: a. The separation of light oils and volatile substances at lower temperatures. b. The production of highly pure "Hard Asphalt," which is highly demanded in the construction industry. ________________________________________ Plant Components and Operational Stages The specialized bitumen plant for processing raw natural bitumen (in both liquid and solid states) consists of a range of specialized equipment designed according to the latest international standards. This equipment aligns with the technical and engineering requirements for bitumen products, complies with Iraqi standard specifications, and adheres to environmental considerations in the Anbar Governorate. 1. Extraction Stage The raw material (solid or liquid) is extracted from quarries designated by the Geological Survey Authority using specialized mechanical equipment. It is stored in stocks or special basins for solid materials, then transported to the refinery site using specialized transport vehicles of various capacities. 2. Storage Stage The raw materials are stored in designated yards to ensure a sufficient inventory for continuous, uninterrupted production for no less than 7 working days. 3. Raw Material Preparation and Primary Heating Stage Raw materials are fed into the plant via hydraulic lifts. This stage includes: • 3-1: Crushing and Digestion: Solid raw materials from the quarries are broken down and digested using a digester (SH-01) equipped with double blades driven by hydraulic motors (22.5 kW capacity). The digester is 5 meters long and 1.80 meters in diameter, made of carbon steel, with Stainless Steel 304 blades. It includes a Stainless Steel piston driven by a 7.5 kW electric motor. • 3-2: Primary Heating: This melts the bitumen and improves pumpability through pipes and pumps. • 3-3: Efficiency Enhancement: To increase melting efficiency, Gas Oil is added to the primary heating basin at a ratio of 1:5 per ton of solid raw material entering the basin (this ratio decreases when using liquid raw bitumen). o 3-2-1: Primary Melting Basin (TK-01): Raw material is heated in a concrete tank (25m L x 5m W x 3m H) with a maximum storage capacity of 300 tons. Heating pipes circulate thermal fluid (oil) at 125°C, with a retention time of 4-6 hours. The tank is internally lined with 6-8 mm carbon steel plates to protect the heating pipes from corrosion. It contains 8 Stainless Steel 304 mixers (MX-01 A/B/C/D/E/F) driven by 7.5 kW electric motors (50 RPM) and gearboxes (1:60 ratio) to mix the material, increase heating efficiency, reduce retention time, and circulate the melted bitumen to eliminate dissolved water, resulting in a homogeneous melt. Covered with a carbon steel roof with service hatches, it connects to an air duct (30x60 cm) linked to 2 air blowers (AB-01A/B) (one operating, one standby) at 22.5 kW / 1500 RPM. These extract water vapor and sulfur fumes, sending them to a scrubber before atmospheric release and water recycling. o 3-2-2: Primary Collection Tank (V-01): A carbon steel tank (12-14 mm thick) with a maximum capacity of 125 tons (10m L x 5m W x 3m H). It connects directly to the primary tank (TK-01) via channels and movable gates to receive only liquid raw material. It contains thermal oil pipes to maintain the liquid raw material at 140°C. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum outer cover. Impurities larger than 35 mm are removed and collected in a waste tank. o 3-2-3: Screw Conveyors (SC-01 A/B): Carbon steel screw conveyors with a double-jacketed outer cover filled with thermal oil to maintain the 140°C temperature. Driven by 22.5 kW electric motors (3000 RPM) with 1:40 gearboxes, they transport the liquid raw material to the preliminary filtration unit. 4. Purification Unit Removes suspended impurities from the liquid raw material in two stages: • 4-1: Preliminary Purification Tank (V-02): A carbon steel tank (12-14 mm thick, 125-ton capacity, 5m L x 10m W x 3m H). Receives liquid raw material from the primary collection tank. Contains thermal oil pipes to maintain 140°C. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum cover. Impurities larger than 15 mm are removed to a waste tank. Material is pumped to the final filtration stage via gear pumps (GP-01 A/B) (one operating, one standby) at 22.5 kW / 1000 RPM. • 4-2: Final Filtration Unit (FT-01): Removes remaining impurities by passing liquids through box filters arranged in 2 trains (8 per train). They feature a two-layer Stainless Steel filter mesh (specified microns) wrapped around square boxes. Liquid enters from the outside, and pure liquid is collected from the inside via a pipe network connected to a manifold. This is driven by two vacuum pumps (VP-01A/B) connected to the raw material tanks. 5. Raw Material Tanks (V-03 A-J) Ten carbon steel tanks (2.5m diameter, 9m length, 14 mm thickness, 45-ton max capacity) equipped with thermal oil heating coils. They receive, store, and prepare the purified raw material for the subsequent cooking reaction. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum cover. Connected by a pipe/valve network, the material is pumped via two centrifugal pumps (P-01 A/B) at 22.5 kW / 3000 RPM to the reactor unit. The tanks connect to a pipe network driven by vacuum pumps (VP-01A/B) at 22.5 kW / 1500 RPM, pushing heating gases and vapors to the gas washing tank (V-14). 6. Reactor (Cooking) Unit (V-04 A/B) Consists of three reactors (55 tons each) that prepare the raw material for vacuum distillation and extract light naphtha compounds. • 6-1: Cooking Process: o 6-1-1: Catalyst System: Consists of two tanks. One prepares the catalyst mixture (1.5m dia, 4m H, 8mm carbon steel) with a mixer (MX-03) driven by a hydromotor and 1:40 gearbox. The second stores Gas Oil added to the preparation unit (1.5m dia, 1m H, 5mm carbon steel) with a 0.5 HP centrifugal pump. o 6-1-2: Reaction Tanks (V-04/05/06A): Three carbon steel tanks (2.8m dia, 9m L, 14mm thick, 55-ton max). Each has 2 Stainless Steel mixers (MX-02 A/B/C/D/E/F) driven by a 7.5 kW motor (1500 RPM) with a 1:40 gearbox. Contains an internal heating system powered by a Gas Oil burner to raise the temperature to 180°C. Catalyst is injected via dosing pumps (DP-01A/B) to increase naphtha extraction efficiency. Material is circulated during cooking by two centrifugal pumps per reactor (P-04A/B/C/D/E/F) (one active, one standby) to reduce retention time to 3-4 hours. After cooking, material is moved to the attached tank (V-04/05/06B) for storage before distillation. Fully insulated. o 6-1-3: Cooked Material Tank (V-04/05/06B): Carbon steel tank (2.8m dia, 9m L, 14mm thick) with thermal oil pipes to maintain 190-200°C. Fully insulated. Material is pumped to the vacuum distillation tower via centrifugal pumps (P-05A/B) (one active, one standby) at 22.5 kW / 3000 RPM. 7. Raw Naphtha Storage Unit Collects and condenses naphtha extracted during cooking. • 7-1-1: Raw Naphtha Tanks (V-07A/B/C): Three vertical Stainless Steel 304 tanks (1.5m dia, 5m H) connected to three heat exchangers and two pump pairs. Equipped internally with water spray nozzles on a ring pipe to wash non-condensable gases. • 7-1-2: Heat Exchangers (HE-01A/B/C): Condense naphtha vapors from 140°C down to 40°C using water from the cooling tower. Connected in series. Shell & Tube type, carbon steel (510 mm dia, 6m L) with 70 tubes (0.75-inch dia) in two rows of 35. Includes internal baffles for efficiency. • 7-1-3: Supporting Pumps: Vacuum pumps (VP-01A/B) at 22.5 kW / 1500 RPM draw naphtha vapors from reactors to the heat exchangers, pushing non-condensable gases to the scrubber (V-14). Centrifugal pumps (P-02A/B) at 11.5 kW / 1500 RPM transport liquid raw naphtha to the Bleaching Unit. 8. Vacuum Distillation Unit The core of the plant, separating remaining light compounds and producing hard asphalt. • 8-1-1: Vacuum Distillation Tower: A vertical tower (~16m total height, 14mm carbon steel). Bottom section (Reboiler) is 3.5m dia x 1.2m H; top section is 1.5m dia x 12m H. Fully insulated. Fed with cooked material at 190-200°C via pumps (P-05A/B). To start extraction (remaining naphtha, Gas Oil, diesel), temperature is raised to 240-250°C using Heating Coil 1 via pumps (P-08A/B) at 55 kW / 3000 RPM, with continuous circulation via pumps (P-07A/B). Vacuum pumps (VP-03A/B) maintain 0.3-0.5 mbar pressure. Light compounds are extracted, condensed (HE-02A/B/C), and stored (V-08/09/10 A/B) over 2.5-3 hours. Afterward, material is heated via Heating Coil 2 to 320-340°C to finalize extraction and produce hard bitumen. Product is extracted via pumps (P-07A/B) at ~320°C, cooled via cooling tower coils, and sent to final tanks (V-18A/B/C). Batch processing takes 6-7 hours daily; continuous operation is possible. • 8-1-2: Supporting Pumps: Vacuum pumps (VP-03A/B) at 5.5 kW / 3000 RPM draw light vapors for condensation. Circulation centrifugal pumps (P-08A/B) at 55 kW move hot material to heating coils; (P-07A/B) circulate material and pump final bitumen product. • 8-1-3: Heating Coils 1 & 2: Carbon steel 4-inch diameter coils heated externally by a Gas Oil burner. Connected in series to heat liquid bitumen in two stages to prevent degradation. • 8-2: Heat Exchangers (HE-02A/B/C): Condense light compound vapors from 240°C to 40°C. Shell & Tube type, carbon steel (600 mm dia, 6m L) with 80 tubes (1-inch dia) in two rows of 40, equipped with baffles. • 8-3: Light Compound Tanks (V-08A/B, V-09A/B, V-10A/B): Six horizontal carbon steel tanks (1.5m dia, 4.5m L, 14mm thick). Receive condensates, linked to heat exchangers and vacuum pumps. Liquids are pumped to the Bleaching Unit via centrifugal pumps (P-06A/B) at 7.5 kW / 1500 RPM. 9. Bleaching Unit Improves the specifications of raw light compounds for local use and marketing. • 9-1: Collection Tank (V-11): Horizontal carbon steel tank (1m dia, 2.5m L, 14mm thick) placed above the system to store and distribute light compounds to the bleaching columns. • 9-2: Bleaching Columns (V-12A/B/C): Three vertical carbon steel vessels (1m dia, 4.5m H, 14mm thick). Contain a 15 cm catalyst layer on trays to bleach raw liquids into high-quality compounds, collected in a bottom horizontal tank. The catalyst is a calcined mixture of Bentonite and Zinc Oxide granules (2-3 mm) homogenized in water, which can be reactivated with steam and 5% HCl. • 9-3: Supporting Pumps: Vacuum pumps (VP-04A/B) at 5.5 kW extract vapors to the scrubber. Centrifugal pumps (P-09A/B) at 7.5 kW push bleached liquids to final tanks. 10. Production Tanks (V-13 A-F & V-18 A-C) • Light Products: Six horizontal carbon steel tanks (2.8m dia, 9m L, 55-ton capacity). V-13A/B for light naphtha, V-13C/D for Gas Oil, V-13E/F for diesel. • Asphalt: Three vertical carbon steel tanks (V-18A/B/C) (5m dia, 9m H). Equipped with thermal oil heating coils to keep asphalt liquid. Fully insulated (90 kg/m³ glass wool, 1.8mm aluminum cover). 11. Supporting Systems • 11-1: Gas Washing (Scrubber) System: Treats non-condensable gases before atmospheric release. Contains V-14 washing tank (1m dia, 2.8m L), a 500mm Flare stack with 3 ignitors, and a 1m x 1m LPG tank (V-15) for ignition. • 11-2: Cooling Tower: Provides cooling water for heat exchangers. Galvanized pressed steel basin (16m L x 2.4m W x 2.8m H), FRP casing, top fans, water distributors, and fill media. Includes Accumulator tank V-20 (1.5m dia, 2m L) and 11 kW pushing pumps (P-14A/B). • 11-3: Thermal Oil Boilers: Includes oil tank, heating boiler, oil pumps, and heating accelerators. • 11-4: Distillation Tower Raw Boilers • 11-5: Power Generation System • 11-6: Production Laboratory • 11-7: Control and Operation Room • 11-8: Catalyst System: Contains a vertical diesel tank (1m dia, 1.5m H) with a 1 kW centrifugal pump (P-11). Two vertical carbon steel tanks (V-17A/B, 1.5m dia, 4.5m H) with an MX-03 hydromotor mixer (7.5 kW, 30 RPM). V-17A is for preparation, V-17B pumps catalyst to the reactor. ________________________________________ Catalyst Chemical Components & Formulations 1. Alumina (Al2O3): Enhances the cracking of chemical bonds in heavy bitumen chains and increases Gas Oil extraction yield. 2. Manganese Dioxide (MnO2): Accelerates the reaction, reduces reaction time, and acts as a gasoline improver. 3. Silicon Dioxide (SiO2): Increases acceleration and reduces reaction time. 4. Iron Oxides (Fe2O): Accelerates the reaction, prevents pipe corrosion, and stops sulfur and wax from sticking to pipes and pumps. Weight Ratios (WT/WT) to Produce One Barrel (200 Liters) of Catalyst: 1. Alumina: Varies by feed: 2-2.5% for Bitumen / 4-5% for Vacuum Residue (VR) / 2-2.5% for Heavy Fuel Oil (HFO). To increase Gas Oil/Diesel (Light fuel) yield, Alumina can be added up to a maximum of 10%. 2. Manganese Dioxide: 2-2.5% for HFO / 4-5% for VR and Bitumen. 3. Iron Oxides: 2-2.5% across all feeds. 4. Silicon Dioxide: 2-2.5% for HFO / 4-5% for Bitumen and VR. 5. Remaining Volume: Filled with C-oil. Note: One barrel (200 Liters) of this mixture is added for every 5 tons of HFO, VR, or Bitumen. Manufacturing Mechanism: All components are placed in a tank, initially mixed with water, and heated to 80-120°C with continuous mixing (20-30 RPM). Once foam is generated, the product is allowed to cool to 80°C. The heating process up to 120°C is repeated 3 or 4 times until foaming ceases. Finally, the temperature is raised to 150°C, and the mixture is topped off to 200 liters using C-oil. To further improve light compound specifications, Zinc Oxide (300 grams) is mixed with 20 kg of Bentonite in C-oil. This is added alongside the catalyst at a ratio of 1/5 barrel of catalyst added to the reactor.
Generate a fashion editorial, high resolution photography, close detail shot, professional fashion model, thick zip up clothes to the end, covered nose and mouth, her beautiful eyes look at the camera provocatively, mixture of minimal fabric and metal materials of techwear, Sony α9 II, FE 100-400mm f/4. 5-5. 6 GM OSS lens, the backdrop is a solid black background, providing a neutral and non-distracting background that accentuates the model's features, realism lights
import bpy # Очистка сцены bpy.ops.object.select_all(action='SELECT') bpy.ops.object.delete(use_global=False) # Добавление плоскости для флага bpy.ops.mesh.primitive_plane_add(size=2, location=(0, 0, 0)) flag = bpy.context.object flag.name = "Korean Flag" # Применение текстуры флага Южной Кореи material = bpy.data.materials.new(name="FlagMaterial") material.use_nodes = True nodes = material.node_tree.nodes links = material.node_tree.links # Удаляем стандартный узел BSDF for node in nodes: nodes.remove(node) # Добавляем узел Image Texture image_texture = nodes.new(type='ShaderNodeTexImage') image_texture.image = bpy.data.images.load("//south_korea_flag.png") # Укажите путь к изображению флага image_texture.location = (-300, 300) # Узел Principled BSDF bsdf = nodes.new(type='ShaderNodeBsdfPrincipled') bsdf.location = (0, 300) # Узел Output output = nodes.new(type='ShaderNodeOutputMaterial') output.location = (300, 300) # Соединяем узлы links.new(image_texture.outputs['Color'], bsdf.inputs['Base Color']) links.new(bsdf.outputs['BSDF'], output.inputs['Surface']) # Присваиваем материал объекту flag.data.materials.append(material) # Добавление текста "Привет, Южная Корея!" bpy.ops.object.text_add(location=(0, -2, 0)) text = bpy.context.object text.data.body = "Hello, South Korea!" text.data.size = 0.5 text.data.extrude = 0.1 # Настройка камеры bpy.ops.object.camera_add(location=(0, -6, 2)) camera = bpy.context.object camera.rotation_euler = (1.2, 0, 0) bpy.context.scene.camera = camera # Настройка света bpy.ops.object.light_add(type='SUN', location=(5, -5, 5)) light = bpy.context.object # Рендеринг сцены bpy.context.scene.render.engine = 'CYCLES' bpy.context.scene.render.filepath = "//hello_south_korea.png" bpy.ops.render.render(write_still=True)
photography, dynamic shooting, distance range, woman, 40 years old, upper-body, staring into the camera, enjoyable and smile, Used camera is Sony α9 II with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, autumnal park, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw --personalize c84qxg1 --stylize 500 --v 6. 1
photography, dynamic shooting, distance range, Egyptian man, , age 25 ,upper-body,setting is an open, minimalistic space with soft, neutral color scheme that accentuates the motion blur, sharply in focus, contrasting with the transient figures around him, highlighting the theme of stillness amidst chaos. street mood to keep the attention on the motion effect background,staring into the camera, enjoyable and smile, Used camera is Sony a9 ll with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, surrounded by a blurred motion of multiple people walking past him, movement, wearing black color loose fit hoodie and khaki jogger pants with red color Vans high- top sneakers, sub models is monochromatic red silhouette,, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw -- personalize c84qxg1 --stylize 500--v 1 6.
photograph, long range shot, fashion model, male, seated on a chair, hairstyle is silver undercut, wearing black horn-rimmed glasses, some shaven face, his attire consists of a black loose-fit rolled up sleeves with arm medium gothic design cross tattoo and lettering tattoo, dyed black denim pants, by Richard Avedon, Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, capture the model’s confident, solid grey background photo studio, gaze into the camera, model is expressed in realistic photo, high contrast, highlighted lighting effects --ar 9:16 --style raw --s 700 --v 6
focused man model, high resolution photograph, used camera Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, emulating a high-contrast, positioned straight on for a candid shot, natural sunlighting through a large window, wearing red polo t-shirt, looking left side, orange juice at the dinner table, high detailing, realistic, UHD --ar 9:16 --style raw --stylize 300
"Cena de filme bíblico épico: um guerreiro ferido "PAULO", vestindo uma armadura marcada por batalhas, avança por um deserto de areia movediça sob um céu carregado de trovões. Cada passo afunda (tribulação), mas em seu rastro, florescem cristais translúcidos que formam um caminho sólido (perseverança). À frente, uma escadaria íngreme de pedra lascada leva a um templo em ruínas, onde suas mãos cicatrizadas reconstroem lentamente os pilares (experiência). No topo, uma mulher idosa vestida como profetisa segura um pergaminho aberto com Romanos 5:3-5 escrito em hebraico antigo, enquanto um sol dourado rompe as nuvens, iluminando um vale verdejante repleto de fontes e crianças brincando (esperança). Ao fundo, uma pomba branca mergulha das alturas, deixando um rastro de luz que envolve o guerreiro. Estilo cinematográfico inspirado em 'Gladiador' e 'Ben-Hur', com iluminação Rembrandt, texturas hiper-realistas de metal enferrujado e pele suada, e simbolismos como correntes quebradas se transformando em grinaldas de flores."
Specialized Bitumen Refining Plant Governorate: Anbar / Hit District Production Capacity: ( ) Tons/Day The city of Hit in the Anbar Governorate is considered one of the most famous areas in the world for its natural "bitumen springs," which have been used for thousands of years (dating back to the Babylonian and Assyrian eras). However, processing this bitumen for modern use requires technical steps to transform it from a raw material into a viable product for construction or industrial applications. Bitumen emerges from these springs as a highly viscous liquid mixed with sulfurous water, salts, and mud impurities. This "Natural Asphalt" differs from petroleum bitumen produced in refineries, and it can also appear in the form of rocky or spongy blocks mixed with mud. To obtain industrially usable products from this bitumen, specifically for: 1. Waterproofing (Felt/Membranes): Considered one of the best coating materials for building foundations to prevent moisture leakage due to its high resistance to hydrolysis. 2. Road Paving: Mixed with gravel and sand to produce asphalt concrete. It is characterized by exceptionally high cohesive strength compared to industrial bitumen. The natural bitumen from these springs must undergo several fundamental processing stages to become industrially viable: 1. Collection and Sedimentation: Bitumen is collected from the springs or quarry sites and left in designated basins to allow the sulfurous water to naturally separate (due to density differences). 2. Primary Heating: The raw bitumen is placed in large boilers to: a. Evaporate the remaining water. b. Reduce viscosity for easier handling. 3. Filtration and Purification: The heated bitumen is screened to remove solid impurities such as gravel, dirt, and suspended organic matter. 4. Secondary Heating and Cooking: The temperature of the bitumen is raised, improving agents are added, and it is prepared for the vacuum distillation process. 5. Vacuum Distillation: The distillation process is conducted under low pressure (vacuum pressure), which allows for: a. The separation of light oils and volatile substances at lower temperatures. b. The production of highly pure "Hard Asphalt," which is highly demanded in the construction industry. ________________________________________ Plant Components and Operational Stages The specialized bitumen plant for processing raw natural bitumen (in both liquid and solid states) consists of a range of specialized equipment designed according to the latest international standards. This equipment aligns with the technical and engineering requirements for bitumen products, complies with Iraqi standard specifications, and adheres to environmental considerations in the Anbar Governorate. 1. Extraction Stage The raw material (solid or liquid) is extracted from quarries designated by the Geological Survey Authority using specialized mechanical equipment. It is stored in stocks or special basins for solid materials, then transported to the refinery site using specialized transport vehicles of various capacities. 2. Storage Stage The raw materials are stored in designated yards to ensure a sufficient inventory for continuous, uninterrupted production for no less than 7 working days. 3. Raw Material Preparation and Primary Heating Stage Raw materials are fed into the plant via hydraulic lifts. This stage includes: • 3-1: Crushing and Digestion: Solid raw materials from the quarries are broken down and digested using a digester (SH-01) equipped with double blades driven by hydraulic motors (22.5 kW capacity). The digester is 5 meters long and 1.80 meters in diameter, made of carbon steel, with Stainless Steel 304 blades. It includes a Stainless Steel piston driven by a 7.5 kW electric motor. • 3-2: Primary Heating: This melts the bitumen and improves pumpability through pipes and pumps. • 3-3: Efficiency Enhancement: To increase melting efficiency, Gas Oil is added to the primary heating basin at a ratio of 1:5 per ton of solid raw material entering the basin (this ratio decreases when using liquid raw bitumen). o 3-2-1: Primary Melting Basin (TK-01): Raw material is heated in a concrete tank (25m L x 5m W x 3m H) with a maximum storage capacity of 300 tons. Heating pipes circulate thermal fluid (oil) at 125°C, with a retention time of 4-6 hours. The tank is internally lined with 6-8 mm carbon steel plates to protect the heating pipes from corrosion. It contains 8 Stainless Steel 304 mixers (MX-01 A/B/C/D/E/F) driven by 7.5 kW electric motors (50 RPM) and gearboxes (1:60 ratio) to mix the material, increase heating efficiency, reduce retention time, and circulate the melted bitumen to eliminate dissolved water, resulting in a homogeneous melt. Covered with a carbon steel roof with service hatches, it connects to an air duct (30x60 cm) linked to 2 air blowers (AB-01A/B) (one operating, one standby) at 22.5 kW / 1500 RPM. These extract water vapor and sulfur fumes, sending them to a scrubber before atmospheric release and water recycling. o 3-2-2: Primary Collection Tank (V-01): A carbon steel tank (12-14 mm thick) with a maximum capacity of 125 tons (10m L x 5m W x 3m H). It connects directly to the primary tank (TK-01) via channels and movable gates to receive only liquid raw material. It contains thermal oil pipes to maintain the liquid raw material at 140°C. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum outer cover. Impurities larger than 35 mm are removed and collected in a waste tank. o 3-2-3: Screw Conveyors (SC-01 A/B): Carbon steel screw conveyors with a double-jacketed outer cover filled with thermal oil to maintain the 140°C temperature. Driven by 22.5 kW electric motors (3000 RPM) with 1:40 gearboxes, they transport the liquid raw material to the preliminary filtration unit. 4. Purification Unit Removes suspended impurities from the liquid raw material in two stages: • 4-1: Preliminary Purification Tank (V-02): A carbon steel tank (12-14 mm thick, 125-ton capacity, 5m L x 10m W x 3m H). Receives liquid raw material from the primary collection tank. Contains thermal oil pipes to maintain 140°C. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum cover. Impurities larger than 15 mm are removed to a waste tank. Material is pumped to the final filtration stage via gear pumps (GP-01 A/B) (one operating, one standby) at 22.5 kW / 1000 RPM. • 4-2: Final Filtration Unit (FT-01): Removes remaining impurities by passing liquids through box filters arranged in 2 trains (8 per train). They feature a two-layer Stainless Steel filter mesh (specified microns) wrapped around square boxes. Liquid enters from the outside, and pure liquid is collected from the inside via a pipe network connected to a manifold. This is driven by two vacuum pumps (VP-01A/B) connected to the raw material tanks. 5. Raw Material Tanks (V-03 A-J) Ten carbon steel tanks (2.5m diameter, 9m length, 14 mm thickness, 45-ton max capacity) equipped with thermal oil heating coils. They receive, store, and prepare the purified raw material for the subsequent cooking reaction. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum cover. Connected by a pipe/valve network, the material is pumped via two centrifugal pumps (P-01 A/B) at 22.5 kW / 3000 RPM to the reactor unit. The tanks connect to a pipe network driven by vacuum pumps (VP-01A/B) at 22.5 kW / 1500 RPM, pushing heating gases and vapors to the gas washing tank (V-14). 6. Reactor (Cooking) Unit (V-04 A/B) Consists of three reactors (55 tons each) that prepare the raw material for vacuum distillation and extract light naphtha compounds. • 6-1: Cooking Process: o 6-1-1: Catalyst System: Consists of two tanks. One prepares the catalyst mixture (1.5m dia, 4m H, 8mm carbon steel) with a mixer (MX-03) driven by a hydromotor and 1:40 gearbox. The second stores Gas Oil added to the preparation unit (1.5m dia, 1m H, 5mm carbon steel) with a 0.5 HP centrifugal pump. o 6-1-2: Reaction Tanks (V-04/05/06A): Three carbon steel tanks (2.8m dia, 9m L, 14mm thick, 55-ton max). Each has 2 Stainless Steel mixers (MX-02 A/B/C/D/E/F) driven by a 7.5 kW motor (1500 RPM) with a 1:40 gearbox. Contains an internal heating system powered by a Gas Oil burner to raise the temperature to 180°C. Catalyst is injected via dosing pumps (DP-01A/B) to increase naphtha extraction efficiency. Material is circulated during cooking by two centrifugal pumps per reactor (P-04A/B/C/D/E/F) (one active, one standby) to reduce retention time to 3-4 hours. After cooking, material is moved to the attached tank (V-04/05/06B) for storage before distillation. Fully insulated. o 6-1-3: Cooked Material Tank (V-04/05/06B): Carbon steel tank (2.8m dia, 9m L, 14mm thick) with thermal oil pipes to maintain 190-200°C. Fully insulated. Material is pumped to the vacuum distillation tower via centrifugal pumps (P-05A/B) (one active, one standby) at 22.5 kW / 3000 RPM. 7. Raw Naphtha Storage Unit Collects and condenses naphtha extracted during cooking. • 7-1-1: Raw Naphtha Tanks (V-07A/B/C): Three vertical Stainless Steel 304 tanks (1.5m dia, 5m H) connected to three heat exchangers and two pump pairs. Equipped internally with water spray nozzles on a ring pipe to wash non-condensable gases. • 7-1-2: Heat Exchangers (HE-01A/B/C): Condense naphtha vapors from 140°C down to 40°C using water from the cooling tower. Connected in series. Shell & Tube type, carbon steel (510 mm dia, 6m L) with 70 tubes (0.75-inch dia) in two rows of 35. Includes internal baffles for efficiency. • 7-1-3: Supporting Pumps: Vacuum pumps (VP-01A/B) at 22.5 kW / 1500 RPM draw naphtha vapors from reactors to the heat exchangers, pushing non-condensable gases to the scrubber (V-14). Centrifugal pumps (P-02A/B) at 11.5 kW / 1500 RPM transport liquid raw naphtha to the Bleaching Unit. 8. Vacuum Distillation Unit The core of the plant, separating remaining light compounds and producing hard asphalt. • 8-1-1: Vacuum Distillation Tower: A vertical tower (~16m total height, 14mm carbon steel). Bottom section (Reboiler) is 3.5m dia x 1.2m H; top section is 1.5m dia x 12m H. Fully insulated. Fed with cooked material at 190-200°C via pumps (P-05A/B). To start extraction (remaining naphtha, Gas Oil, diesel), temperature is raised to 240-250°C using Heating Coil 1 via pumps (P-08A/B) at 55 kW / 3000 RPM, with continuous circulation via pumps (P-07A/B). Vacuum pumps (VP-03A/B) maintain 0.3-0.5 mbar pressure. Light compounds are extracted, condensed (HE-02A/B/C), and stored (V-08/09/10 A/B) over 2.5-3 hours. Afterward, material is heated via Heating Coil 2 to 320-340°C to finalize extraction and produce hard bitumen. Product is extracted via pumps (P-07A/B) at ~320°C, cooled via cooling tower coils, and sent to final tanks (V-18A/B/C). Batch processing takes 6-7 hours daily; continuous operation is possible. • 8-1-2: Supporting Pumps: Vacuum pumps (VP-03A/B) at 5.5 kW / 3000 RPM draw light vapors for condensation. Circulation centrifugal pumps (P-08A/B) at 55 kW move hot material to heating coils; (P-07A/B) circulate material and pump final bitumen product. • 8-1-3: Heating Coils 1 & 2: Carbon steel 4-inch diameter coils heated externally by a Gas Oil burner. Connected in series to heat liquid bitumen in two stages to prevent degradation. • 8-2: Heat Exchangers (HE-02A/B/C): Condense light compound vapors from 240°C to 40°C. Shell & Tube type, carbon steel (600 mm dia, 6m L) with 80 tubes (1-inch dia) in two rows of 40, equipped with baffles. • 8-3: Light Compound Tanks (V-08A/B, V-09A/B, V-10A/B): Six horizontal carbon steel tanks (1.5m dia, 4.5m L, 14mm thick). Receive condensates, linked to heat exchangers and vacuum pumps. Liquids are pumped to the Bleaching Unit via centrifugal pumps (P-06A/B) at 7.5 kW / 1500 RPM. 9. Bleaching Unit Improves the specifications of raw light compounds for local use and marketing. • 9-1: Collection Tank (V-11): Horizontal carbon steel tank (1m dia, 2.5m L, 14mm thick) placed above the system to store and distribute light compounds to the bleaching columns. • 9-2: Bleaching Columns (V-12A/B/C): Three vertical carbon steel vessels (1m dia, 4.5m H, 14mm thick). Contain a 15 cm catalyst layer on trays to bleach raw liquids into high-quality compounds, collected in a bottom horizontal tank. The catalyst is a calcined mixture of Bentonite and Zinc Oxide granules (2-3 mm) homogenized in water, which can be reactivated with steam and 5% HCl. • 9-3: Supporting Pumps: Vacuum pumps (VP-04A/B) at 5.5 kW extract vapors to the scrubber. Centrifugal pumps (P-09A/B) at 7.5 kW push bleached liquids to final tanks. 10. Production Tanks (V-13 A-F & V-18 A-C) • Light Products: Six horizontal carbon steel tanks (2.8m dia, 9m L, 55-ton capacity). V-13A/B for light naphtha, V-13C/D for Gas Oil, V-13E/F for diesel. • Asphalt: Three vertical carbon steel tanks (V-18A/B/C) (5m dia, 9m H). Equipped with thermal oil heating coils to keep asphalt liquid. Fully insulated (90 kg/m³ glass wool, 1.8mm aluminum cover). 11. Supporting Systems • 11-1: Gas Washing (Scrubber) System: Treats non-condensable gases before atmospheric release. Contains V-14 washing tank (1m dia, 2.8m L), a 500mm Flare stack with 3 ignitors, and a 1m x 1m LPG tank (V-15) for ignition. • 11-2: Cooling Tower: Provides cooling water for heat exchangers. Galvanized pressed steel basin (16m L x 2.4m W x 2.8m H), FRP casing, top fans, water distributors, and fill media. Includes Accumulator tank V-20 (1.5m dia, 2m L) and 11 kW pushing pumps (P-14A/B). • 11-3: Thermal Oil Boilers: Includes oil tank, heating boiler, oil pumps, and heating accelerators. • 11-4: Distillation Tower Raw Boilers • 11-5: Power Generation System • 11-6: Production Laboratory • 11-7: Control and Operation Room • 11-8: Catalyst System: Contains a vertical diesel tank (1m dia, 1.5m H) with a 1 kW centrifugal pump (P-11). Two vertical carbon steel tanks (V-17A/B, 1.5m dia, 4.5m H) with an MX-03 hydromotor mixer (7.5 kW, 30 RPM). V-17A is for preparation, V-17B pumps catalyst to the reactor. ________________________________________ Catalyst Chemical Components & Formulations 1. Alumina (Al2O3): Enhances the cracking of chemical bonds in heavy bitumen chains and increases Gas Oil extraction yield. 2. Manganese Dioxide (MnO2): Accelerates the reaction, reduces reaction time, and acts as a gasoline improver. 3. Silicon Dioxide (SiO2): Increases acceleration and reduces reaction time. 4. Iron Oxides (Fe2O): Accelerates the reaction, prevents pipe corrosion, and stops sulfur and wax from sticking to pipes and pumps. Weight Ratios (WT/WT) to Produce One Barrel (200 Liters) of Catalyst: 1. Alumina: Varies by feed: 2-2.5% for Bitumen / 4-5% for Vacuum Residue (VR) / 2-2.5% for Heavy Fuel Oil (HFO). To increase Gas Oil/Diesel (Light fuel) yield, Alumina can be added up to a maximum of 10%. 2. Manganese Dioxide: 2-2.5% for HFO / 4-5% for VR and Bitumen. 3. Iron Oxides: 2-2.5% across all feeds. 4. Silicon Dioxide: 2-2.5% for HFO / 4-5% for Bitumen and VR. 5. Remaining Volume: Filled with C-oil. Note: One barrel (200 Liters) of this mixture is added for every 5 tons of HFO, VR, or Bitumen. Manufacturing Mechanism: All components are placed in a tank, initially mixed with water, and heated to 80-120°C with continuous mixing (20-30 RPM). Once foam is generated, the product is allowed to cool to 80°C. The heating process up to 120°C is repeated 3 or 4 times until foaming ceases. Finally, the temperature is raised to 150°C, and the mixture is topped off to 200 liters using C-oil. To further improve light compound specifications, Zinc Oxide (300 grams) is mixed with 20 kg of Bentonite in C-oil. This is added alongside the catalyst at a ratio of 1/5 barrel of catalyst added to the reactor.
photograph, long range shot, fashion model, male, seated on a chair, hairstyle is silver undercut, wearing black horn-rimmed glasses, some shaven face, his attire consists of a black loose-fit rolled up sleeves with arm medium gothic design cross tattoo and lettering tattoo, dyed black denim pants, by Richard Avedon, Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, capture the model’s confident, solid grey background photo studio, gaze into the camera, model is expressed in realistic photo, high contrast, highlighted lighting effects --ar 9:16 --style raw --s 700 --v 6
photography, dynamic shooting, distance range, Egyptian man ,buzz cut , upper-body, staring into the camera, enjoyable and smile, Used camera is Sony a9 ll with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, Egyptian army clothing, The nameplate on the uniform reads "Soldier / Ahmed Farag El Mahlawy", autumnal beach, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw -- personalize c84qxg1 --stylize 500--v 1 6.
Generate this image: product editorial for fashion magazine. High resolution photograph. Shot by a professional photographer. A photorealistic image of exclusive facial cream jar with a sleek, silver cap, placed against a dark-to-light brown gradient background. The image must suggests luxury. The spot light is casting some shadows like natural sunlight. Minimalist aesthetic, subtle branding, showcases style and design innovation. Main studio Light set is a tall Softbox is lighting from the left. Style: realistic, product shot. Sony α9 II, FE 100-400mm f/4. 5-5. 6 GM OSS lens
photography, dynamic shooting, distance range, woman, 40 years old, upper-body, staring into the camera, enjoyable and smile, Used camera is Sony α9 II with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, autumnal park, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw --personalize c84qxg1 --stylize 500 --v 6. 1
photograph, front view, donald trump, standing on solid grey background, gaze into the camera, wrinkles on the forehead, by Richard Avedon style, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, wearing black suit with with white shirt and red tie, showing thumbs up realistic photography, high contrast --ar 9:16 --style raw
photograph, front view, donald trump, standing on solid grey background, gaze into the camera, wrinkles on the forehead, by Richard Avedon style, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, wearing black suit with with white shirt and red tie, showing thumbs up realistic photography, high contrast --ar 9:16 --style raw
photography, low shot, female skateboarder is captured mid-flight above a skatepark ramp, cap backward and flowing curly hair that defies gravity, fitted white long sleeves and dark green cargo jogger pants, skateboarder's feet are snug in pristine skate shoes, and their board is a canvas of adventure with colorful stickers and the tale-telling scuffs of a well-used deck, wheels show signs of a life ridden hard, bright blue sky, the sun casting a radiant outline around the airborne figure, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, realism light and shadows --ar 9:16 --s 500
"Cena de filme bíblico épico: um guerreiro ferido, vestindo uma armadura marcada por batalhas, avança por um deserto de areia movediça sob um céu carregado de trovões. Cada passo afunda (tribulação), mas em seu rastro, florescem cristais translúcidos que formam um caminho sólido (perseverança). À frente, uma escadaria íngreme de pedra lascada leva a um templo em ruínas, onde suas mãos cicatrizadas reconstroem lentamente os pilares (experiência). No topo, uma mulher idosa vestida como profetisa segura um pergaminho aberto com Romanos 5:3-5 escrito em hebraico antigo, enquanto um sol dourado rompe as nuvens, iluminando um vale verdejante repleto de fontes e crianças brincando (esperança). Ao fundo, uma pomba branca mergulha das alturas, deixando um rastro de luz que envolve o guerreiro. Estilo cinematográfico inspirado em 'Gladiador' e 'Ben-Hur', com iluminação Rembrandt, texturas hiper-realistas de metal enferrujado e pele suada, e simbolismos como correntes quebradas se transformando em grinaldas de flores."
Vídeo publicitario de 10 segundos, estilo cinematográfico. Escena 1 (0-4s): un profesor de mediana edad sentado en su mesa, agobiado, rodeado de pilas de exámenes en papel, post-its y una pizarra llena de tareas, luz fría y gris, cámara cerrada sobre su rostro cansado, ambiente caótico. Transición rápida tipo "flash" o disolución de luz cálida (4-5s). Escena 2 (5-10s): el mismo profesor, ahora relajado y sonriente, frente a un portátil abierto con una interfaz de IA limpia y minimalista, luz cálida y dorada, aula ordenada de fondo, gesto de alivio, plano final se mantiene estable unos segundos para dejar espacio a texto/logo en post-producción. Cámara estable, tono profesional pero cercano.
Generate a fashion editorial, high resolution photography, close detail shot, professional fashion model, thick zip up clothes to the end, covered nose and mouth, her beautiful eyes look at the camera provocatively, mixture of minimal fabric and metal materials of techwear, Sony α9 II, FE 100-400mm f/4. 5-5. 6 GM OSS lens, the backdrop is a solid black background, providing a neutral and non-distracting background that accentuates the model's features, realism lights
import bpy # Очистка сцены bpy.ops.object.select_all(action='SELECT') bpy.ops.object.delete(use_global=False) # Добавление плоскости для флага bpy.ops.mesh.primitive_plane_add(size=2, location=(0, 0, 0)) flag = bpy.context.object flag.name = "Korean Flag" # Применение текстуры флага Южной Кореи material = bpy.data.materials.new(name="FlagMaterial") material.use_nodes = True nodes = material.node_tree.nodes links = material.node_tree.links # Удаляем стандартный узел BSDF for node in nodes: nodes.remove(node) # Добавляем узел Image Texture image_texture = nodes.new(type='ShaderNodeTexImage') image_texture.image = bpy.data.images.load("//south_korea_flag.png") # Укажите путь к изображению флага image_texture.location = (-300, 300) # Узел Principled BSDF bsdf = nodes.new(type='ShaderNodeBsdfPrincipled') bsdf.location = (0, 300) # Узел Output output = nodes.new(type='ShaderNodeOutputMaterial') output.location = (300, 300) # Соединяем узлы links.new(image_texture.outputs['Color'], bsdf.inputs['Base Color']) links.new(bsdf.outputs['BSDF'], output.inputs['Surface']) # Присваиваем материал объекту flag.data.materials.append(material) # Добавление текста "Привет, Южная Корея!" bpy.ops.object.text_add(location=(0, -2, 0)) text = bpy.context.object text.data.body = "Hello, South Korea!" text.data.size = 0.5 text.data.extrude = 0.1 # Настройка камеры bpy.ops.object.camera_add(location=(0, -6, 2)) camera = bpy.context.object camera.rotation_euler = (1.2, 0, 0) bpy.context.scene.camera = camera # Настройка света bpy.ops.object.light_add(type='SUN', location=(5, -5, 5)) light = bpy.context.object # Рендеринг сцены bpy.context.scene.render.engine = 'CYCLES' bpy.context.scene.render.filepath = "//hello_south_korea.png" bpy.ops.render.render(write_still=True)
photography, dynamic shooting, distance range, Egyptian man ,buzz cut , upper-body, staring into the camera, enjoyable and smile, Used camera is Sony a9 ll with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, Egyptian army clothing, The nameplate on the uniform reads "Soldier / Ahmed Farag El Mahlawy", autumnal beach, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw -- personalize c84qxg1 --stylize 500--v 1 6.
photography, dynamic shooting, distance range, Egyptian man, , age 25 ,upper-body,setting is an open, minimalistic space with soft, neutral color scheme that accentuates the motion blur, sharply in focus, contrasting with the transient figures around him, highlighting the theme of stillness amidst chaos. street mood to keep the attention on the motion effect background,staring into the camera, enjoyable and smile, Used camera is Sony a9 ll with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, surrounded by a blurred motion of multiple people walking past him, movement, wearing black color loose fit hoodie and khaki jogger pants with red color Vans high- top sneakers, sub models is monochromatic red silhouette,, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw -- personalize c84qxg1 --stylize 500--v 1 6.
photograph, front view, donald trump, standing on solid grey background, gaze into the camera, wrinkles on the forehead, by Richard Avedon style, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, wearing black suit with with white shirt and red tie, showing thumbs up realistic photography, high contrast --ar 9:16 --style raw
focused man model, high resolution photograph, used camera Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, emulating a high-contrast, positioned straight on for a candid shot, natural sunlighting through a large window, wearing red polo t-shirt, looking left side, orange juice at the dinner table, high detailing, realistic, UHD --ar 9:16 --style raw --stylize 300
Generate a fashion editorial, high resolution photography, close detail shot, professional fashion model, thick zip up clothes to the end, covered nose and mouth, her beautiful eyes look at the camera provocatively, mixture of minimal fabric and metal materials of techwear, Sony α9 II, FE 100-400mm f/4. 5-5. 6 GM OSS lens, the backdrop is a solid black background, providing a neutral and non-distracting background that accentuates the model's features, realism lights
photograph, long range shot, fashion model, male, seated on a chair, hairstyle is silver undercut, wearing black horn-rimmed glasses, some shaven face, his attire consists of a black loose-fit rolled up sleeves with arm medium gothic design cross tattoo and lettering tattoo, dyed black denim pants, by Richard Avedon, Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, capture the model’s confident, solid grey background photo studio, gaze into the camera, model is expressed in realistic photo, high contrast, highlighted lighting effects --ar 9:16 --style raw --s 700 --v 6
photography, dynamic shooting, distance range, woman, 40 years old, upper-body, staring into the camera, enjoyable and smile, Used camera is Sony α9 II with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, autumnal park, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw --personalize c84qxg1 --stylize 500 --v 6. 1
photography, dynamic shooting, distance range, woman, 40 years old, upper-body, staring into the camera, enjoyable and smile, Used camera is Sony α9 II with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, autumnal park, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw --personalize c84qxg1 --stylize 500 --v 6. 1
photograph, front view, donald trump, standing on solid grey background, gaze into the camera, wrinkles on the forehead, by Richard Avedon style, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, wearing black suit with with white shirt and red tie, showing thumbs up realistic photography, high contrast --ar 9:16 --style raw
photography, low shot, female skateboarder is captured mid-flight above a skatepark ramp, cap backward and flowing curly hair that defies gravity, fitted white long sleeves and dark green cargo jogger pants, skateboarder's feet are snug in pristine skate shoes, and their board is a canvas of adventure with colorful stickers and the tale-telling scuffs of a well-used deck, wheels show signs of a life ridden hard, bright blue sky, the sun casting a radiant outline around the airborne figure, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, realism light and shadows --ar 9:16 --s 500
"Cena de filme bíblico épico: um guerreiro ferido, vestindo uma armadura marcada por batalhas, avança por um deserto de areia movediça sob um céu carregado de trovões. Cada passo afunda (tribulação), mas em seu rastro, florescem cristais translúcidos que formam um caminho sólido (perseverança). À frente, uma escadaria íngreme de pedra lascada leva a um templo em ruínas, onde suas mãos cicatrizadas reconstroem lentamente os pilares (experiência). No topo, uma mulher idosa vestida como profetisa segura um pergaminho aberto com Romanos 5:3-5 escrito em hebraico antigo, enquanto um sol dourado rompe as nuvens, iluminando um vale verdejante repleto de fontes e crianças brincando (esperança). Ao fundo, uma pomba branca mergulha das alturas, deixando um rastro de luz que envolve o guerreiro. Estilo cinematográfico inspirado em 'Gladiador' e 'Ben-Hur', com iluminação Rembrandt, texturas hiper-realistas de metal enferrujado e pele suada, e simbolismos como correntes quebradas se transformando em grinaldas de flores."
Specialized Bitumen Refining Plant Governorate: Anbar / Hit District Production Capacity: ( ) Tons/Day The city of Hit in the Anbar Governorate is considered one of the most famous areas in the world for its natural "bitumen springs," which have been used for thousands of years (dating back to the Babylonian and Assyrian eras). However, processing this bitumen for modern use requires technical steps to transform it from a raw material into a viable product for construction or industrial applications. Bitumen emerges from these springs as a highly viscous liquid mixed with sulfurous water, salts, and mud impurities. This "Natural Asphalt" differs from petroleum bitumen produced in refineries, and it can also appear in the form of rocky or spongy blocks mixed with mud. To obtain industrially usable products from this bitumen, specifically for: 1. Waterproofing (Felt/Membranes): Considered one of the best coating materials for building foundations to prevent moisture leakage due to its high resistance to hydrolysis. 2. Road Paving: Mixed with gravel and sand to produce asphalt concrete. It is characterized by exceptionally high cohesive strength compared to industrial bitumen. The natural bitumen from these springs must undergo several fundamental processing stages to become industrially viable: 1. Collection and Sedimentation: Bitumen is collected from the springs or quarry sites and left in designated basins to allow the sulfurous water to naturally separate (due to density differences). 2. Primary Heating: The raw bitumen is placed in large boilers to: a. Evaporate the remaining water. b. Reduce viscosity for easier handling. 3. Filtration and Purification: The heated bitumen is screened to remove solid impurities such as gravel, dirt, and suspended organic matter. 4. Secondary Heating and Cooking: The temperature of the bitumen is raised, improving agents are added, and it is prepared for the vacuum distillation process. 5. Vacuum Distillation: The distillation process is conducted under low pressure (vacuum pressure), which allows for: a. The separation of light oils and volatile substances at lower temperatures. b. The production of highly pure "Hard Asphalt," which is highly demanded in the construction industry. ________________________________________ Plant Components and Operational Stages The specialized bitumen plant for processing raw natural bitumen (in both liquid and solid states) consists of a range of specialized equipment designed according to the latest international standards. This equipment aligns with the technical and engineering requirements for bitumen products, complies with Iraqi standard specifications, and adheres to environmental considerations in the Anbar Governorate. 1. Extraction Stage The raw material (solid or liquid) is extracted from quarries designated by the Geological Survey Authority using specialized mechanical equipment. It is stored in stocks or special basins for solid materials, then transported to the refinery site using specialized transport vehicles of various capacities. 2. Storage Stage The raw materials are stored in designated yards to ensure a sufficient inventory for continuous, uninterrupted production for no less than 7 working days. 3. Raw Material Preparation and Primary Heating Stage Raw materials are fed into the plant via hydraulic lifts. This stage includes: • 3-1: Crushing and Digestion: Solid raw materials from the quarries are broken down and digested using a digester (SH-01) equipped with double blades driven by hydraulic motors (22.5 kW capacity). The digester is 5 meters long and 1.80 meters in diameter, made of carbon steel, with Stainless Steel 304 blades. It includes a Stainless Steel piston driven by a 7.5 kW electric motor. • 3-2: Primary Heating: This melts the bitumen and improves pumpability through pipes and pumps. • 3-3: Efficiency Enhancement: To increase melting efficiency, Gas Oil is added to the primary heating basin at a ratio of 1:5 per ton of solid raw material entering the basin (this ratio decreases when using liquid raw bitumen). o 3-2-1: Primary Melting Basin (TK-01): Raw material is heated in a concrete tank (25m L x 5m W x 3m H) with a maximum storage capacity of 300 tons. Heating pipes circulate thermal fluid (oil) at 125°C, with a retention time of 4-6 hours. The tank is internally lined with 6-8 mm carbon steel plates to protect the heating pipes from corrosion. It contains 8 Stainless Steel 304 mixers (MX-01 A/B/C/D/E/F) driven by 7.5 kW electric motors (50 RPM) and gearboxes (1:60 ratio) to mix the material, increase heating efficiency, reduce retention time, and circulate the melted bitumen to eliminate dissolved water, resulting in a homogeneous melt. Covered with a carbon steel roof with service hatches, it connects to an air duct (30x60 cm) linked to 2 air blowers (AB-01A/B) (one operating, one standby) at 22.5 kW / 1500 RPM. These extract water vapor and sulfur fumes, sending them to a scrubber before atmospheric release and water recycling. o 3-2-2: Primary Collection Tank (V-01): A carbon steel tank (12-14 mm thick) with a maximum capacity of 125 tons (10m L x 5m W x 3m H). It connects directly to the primary tank (TK-01) via channels and movable gates to receive only liquid raw material. It contains thermal oil pipes to maintain the liquid raw material at 140°C. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum outer cover. Impurities larger than 35 mm are removed and collected in a waste tank. o 3-2-3: Screw Conveyors (SC-01 A/B): Carbon steel screw conveyors with a double-jacketed outer cover filled with thermal oil to maintain the 140°C temperature. Driven by 22.5 kW electric motors (3000 RPM) with 1:40 gearboxes, they transport the liquid raw material to the preliminary filtration unit. 4. Purification Unit Removes suspended impurities from the liquid raw material in two stages: • 4-1: Preliminary Purification Tank (V-02): A carbon steel tank (12-14 mm thick, 125-ton capacity, 5m L x 10m W x 3m H). Receives liquid raw material from the primary collection tank. Contains thermal oil pipes to maintain 140°C. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum cover. Impurities larger than 15 mm are removed to a waste tank. Material is pumped to the final filtration stage via gear pumps (GP-01 A/B) (one operating, one standby) at 22.5 kW / 1000 RPM. • 4-2: Final Filtration Unit (FT-01): Removes remaining impurities by passing liquids through box filters arranged in 2 trains (8 per train). They feature a two-layer Stainless Steel filter mesh (specified microns) wrapped around square boxes. Liquid enters from the outside, and pure liquid is collected from the inside via a pipe network connected to a manifold. This is driven by two vacuum pumps (VP-01A/B) connected to the raw material tanks. 5. Raw Material Tanks (V-03 A-J) Ten carbon steel tanks (2.5m diameter, 9m length, 14 mm thickness, 45-ton max capacity) equipped with thermal oil heating coils. They receive, store, and prepare the purified raw material for the subsequent cooking reaction. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum cover. Connected by a pipe/valve network, the material is pumped via two centrifugal pumps (P-01 A/B) at 22.5 kW / 3000 RPM to the reactor unit. The tanks connect to a pipe network driven by vacuum pumps (VP-01A/B) at 22.5 kW / 1500 RPM, pushing heating gases and vapors to the gas washing tank (V-14). 6. Reactor (Cooking) Unit (V-04 A/B) Consists of three reactors (55 tons each) that prepare the raw material for vacuum distillation and extract light naphtha compounds. • 6-1: Cooking Process: o 6-1-1: Catalyst System: Consists of two tanks. One prepares the catalyst mixture (1.5m dia, 4m H, 8mm carbon steel) with a mixer (MX-03) driven by a hydromotor and 1:40 gearbox. The second stores Gas Oil added to the preparation unit (1.5m dia, 1m H, 5mm carbon steel) with a 0.5 HP centrifugal pump. o 6-1-2: Reaction Tanks (V-04/05/06A): Three carbon steel tanks (2.8m dia, 9m L, 14mm thick, 55-ton max). Each has 2 Stainless Steel mixers (MX-02 A/B/C/D/E/F) driven by a 7.5 kW motor (1500 RPM) with a 1:40 gearbox. Contains an internal heating system powered by a Gas Oil burner to raise the temperature to 180°C. Catalyst is injected via dosing pumps (DP-01A/B) to increase naphtha extraction efficiency. Material is circulated during cooking by two centrifugal pumps per reactor (P-04A/B/C/D/E/F) (one active, one standby) to reduce retention time to 3-4 hours. After cooking, material is moved to the attached tank (V-04/05/06B) for storage before distillation. Fully insulated. o 6-1-3: Cooked Material Tank (V-04/05/06B): Carbon steel tank (2.8m dia, 9m L, 14mm thick) with thermal oil pipes to maintain 190-200°C. Fully insulated. Material is pumped to the vacuum distillation tower via centrifugal pumps (P-05A/B) (one active, one standby) at 22.5 kW / 3000 RPM. 7. Raw Naphtha Storage Unit Collects and condenses naphtha extracted during cooking. • 7-1-1: Raw Naphtha Tanks (V-07A/B/C): Three vertical Stainless Steel 304 tanks (1.5m dia, 5m H) connected to three heat exchangers and two pump pairs. Equipped internally with water spray nozzles on a ring pipe to wash non-condensable gases. • 7-1-2: Heat Exchangers (HE-01A/B/C): Condense naphtha vapors from 140°C down to 40°C using water from the cooling tower. Connected in series. Shell & Tube type, carbon steel (510 mm dia, 6m L) with 70 tubes (0.75-inch dia) in two rows of 35. Includes internal baffles for efficiency. • 7-1-3: Supporting Pumps: Vacuum pumps (VP-01A/B) at 22.5 kW / 1500 RPM draw naphtha vapors from reactors to the heat exchangers, pushing non-condensable gases to the scrubber (V-14). Centrifugal pumps (P-02A/B) at 11.5 kW / 1500 RPM transport liquid raw naphtha to the Bleaching Unit. 8. Vacuum Distillation Unit The core of the plant, separating remaining light compounds and producing hard asphalt. • 8-1-1: Vacuum Distillation Tower: A vertical tower (~16m total height, 14mm carbon steel). Bottom section (Reboiler) is 3.5m dia x 1.2m H; top section is 1.5m dia x 12m H. Fully insulated. Fed with cooked material at 190-200°C via pumps (P-05A/B). To start extraction (remaining naphtha, Gas Oil, diesel), temperature is raised to 240-250°C using Heating Coil 1 via pumps (P-08A/B) at 55 kW / 3000 RPM, with continuous circulation via pumps (P-07A/B). Vacuum pumps (VP-03A/B) maintain 0.3-0.5 mbar pressure. Light compounds are extracted, condensed (HE-02A/B/C), and stored (V-08/09/10 A/B) over 2.5-3 hours. Afterward, material is heated via Heating Coil 2 to 320-340°C to finalize extraction and produce hard bitumen. Product is extracted via pumps (P-07A/B) at ~320°C, cooled via cooling tower coils, and sent to final tanks (V-18A/B/C). Batch processing takes 6-7 hours daily; continuous operation is possible. • 8-1-2: Supporting Pumps: Vacuum pumps (VP-03A/B) at 5.5 kW / 3000 RPM draw light vapors for condensation. Circulation centrifugal pumps (P-08A/B) at 55 kW move hot material to heating coils; (P-07A/B) circulate material and pump final bitumen product. • 8-1-3: Heating Coils 1 & 2: Carbon steel 4-inch diameter coils heated externally by a Gas Oil burner. Connected in series to heat liquid bitumen in two stages to prevent degradation. • 8-2: Heat Exchangers (HE-02A/B/C): Condense light compound vapors from 240°C to 40°C. Shell & Tube type, carbon steel (600 mm dia, 6m L) with 80 tubes (1-inch dia) in two rows of 40, equipped with baffles. • 8-3: Light Compound Tanks (V-08A/B, V-09A/B, V-10A/B): Six horizontal carbon steel tanks (1.5m dia, 4.5m L, 14mm thick). Receive condensates, linked to heat exchangers and vacuum pumps. Liquids are pumped to the Bleaching Unit via centrifugal pumps (P-06A/B) at 7.5 kW / 1500 RPM. 9. Bleaching Unit Improves the specifications of raw light compounds for local use and marketing. • 9-1: Collection Tank (V-11): Horizontal carbon steel tank (1m dia, 2.5m L, 14mm thick) placed above the system to store and distribute light compounds to the bleaching columns. • 9-2: Bleaching Columns (V-12A/B/C): Three vertical carbon steel vessels (1m dia, 4.5m H, 14mm thick). Contain a 15 cm catalyst layer on trays to bleach raw liquids into high-quality compounds, collected in a bottom horizontal tank. The catalyst is a calcined mixture of Bentonite and Zinc Oxide granules (2-3 mm) homogenized in water, which can be reactivated with steam and 5% HCl. • 9-3: Supporting Pumps: Vacuum pumps (VP-04A/B) at 5.5 kW extract vapors to the scrubber. Centrifugal pumps (P-09A/B) at 7.5 kW push bleached liquids to final tanks. 10. Production Tanks (V-13 A-F & V-18 A-C) • Light Products: Six horizontal carbon steel tanks (2.8m dia, 9m L, 55-ton capacity). V-13A/B for light naphtha, V-13C/D for Gas Oil, V-13E/F for diesel. • Asphalt: Three vertical carbon steel tanks (V-18A/B/C) (5m dia, 9m H). Equipped with thermal oil heating coils to keep asphalt liquid. Fully insulated (90 kg/m³ glass wool, 1.8mm aluminum cover). 11. Supporting Systems • 11-1: Gas Washing (Scrubber) System: Treats non-condensable gases before atmospheric release. Contains V-14 washing tank (1m dia, 2.8m L), a 500mm Flare stack with 3 ignitors, and a 1m x 1m LPG tank (V-15) for ignition. • 11-2: Cooling Tower: Provides cooling water for heat exchangers. Galvanized pressed steel basin (16m L x 2.4m W x 2.8m H), FRP casing, top fans, water distributors, and fill media. Includes Accumulator tank V-20 (1.5m dia, 2m L) and 11 kW pushing pumps (P-14A/B). • 11-3: Thermal Oil Boilers: Includes oil tank, heating boiler, oil pumps, and heating accelerators. • 11-4: Distillation Tower Raw Boilers • 11-5: Power Generation System • 11-6: Production Laboratory • 11-7: Control and Operation Room • 11-8: Catalyst System: Contains a vertical diesel tank (1m dia, 1.5m H) with a 1 kW centrifugal pump (P-11). Two vertical carbon steel tanks (V-17A/B, 1.5m dia, 4.5m H) with an MX-03 hydromotor mixer (7.5 kW, 30 RPM). V-17A is for preparation, V-17B pumps catalyst to the reactor. ________________________________________ Catalyst Chemical Components & Formulations 1. Alumina (Al2O3): Enhances the cracking of chemical bonds in heavy bitumen chains and increases Gas Oil extraction yield. 2. Manganese Dioxide (MnO2): Accelerates the reaction, reduces reaction time, and acts as a gasoline improver. 3. Silicon Dioxide (SiO2): Increases acceleration and reduces reaction time. 4. Iron Oxides (Fe2O): Accelerates the reaction, prevents pipe corrosion, and stops sulfur and wax from sticking to pipes and pumps. Weight Ratios (WT/WT) to Produce One Barrel (200 Liters) of Catalyst: 1. Alumina: Varies by feed: 2-2.5% for Bitumen / 4-5% for Vacuum Residue (VR) / 2-2.5% for Heavy Fuel Oil (HFO). To increase Gas Oil/Diesel (Light fuel) yield, Alumina can be added up to a maximum of 10%. 2. Manganese Dioxide: 2-2.5% for HFO / 4-5% for VR and Bitumen. 3. Iron Oxides: 2-2.5% across all feeds. 4. Silicon Dioxide: 2-2.5% for HFO / 4-5% for Bitumen and VR. 5. Remaining Volume: Filled with C-oil. Note: One barrel (200 Liters) of this mixture is added for every 5 tons of HFO, VR, or Bitumen. Manufacturing Mechanism: All components are placed in a tank, initially mixed with water, and heated to 80-120°C with continuous mixing (20-30 RPM). Once foam is generated, the product is allowed to cool to 80°C. The heating process up to 120°C is repeated 3 or 4 times until foaming ceases. Finally, the temperature is raised to 150°C, and the mixture is topped off to 200 liters using C-oil. To further improve light compound specifications, Zinc Oxide (300 grams) is mixed with 20 kg of Bentonite in C-oil. This is added alongside the catalyst at a ratio of 1/5 barrel of catalyst added to the reactor.
Generate this image: product editorial for fashion magazine. High resolution photograph. Shot by a professional photographer. A photorealistic image of exclusive facial cream jar with a sleek, silver cap, placed against a dark-to-light brown gradient background. The image must suggests luxury. The spot light is casting some shadows like natural sunlight. Minimalist aesthetic, subtle branding, showcases style and design innovation. Main studio Light set is a tall Softbox is lighting from the left. Style: realistic, product shot. Sony α9 II, FE 100-400mm f/4. 5-5. 6 GM OSS lens
photograph, long range shot, fashion model, male, seated on a chair, hairstyle is silver undercut, wearing black horn-rimmed glasses, some shaven face, his attire consists of a black loose-fit rolled up sleeves with arm medium gothic design cross tattoo and lettering tattoo, dyed black denim pants, by Richard Avedon, Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, capture the model’s confident, solid grey background photo studio, gaze into the camera, model is expressed in realistic photo, high contrast, highlighted lighting effects --ar 9:16 --style raw --s 700 --v 6
"Cena de filme bíblico épico: um guerreiro ferido "PAULO", vestindo uma armadura marcada por batalhas, avança por um deserto de areia movediça sob um céu carregado de trovões. Cada passo afunda (tribulação), mas em seu rastro, florescem cristais translúcidos que formam um caminho sólido (perseverança). À frente, uma escadaria íngreme de pedra lascada leva a um templo em ruínas, onde suas mãos cicatrizadas reconstroem lentamente os pilares (experiência). No topo, uma mulher idosa vestida como profetisa segura um pergaminho aberto com Romanos 5:3-5 escrito em hebraico antigo, enquanto um sol dourado rompe as nuvens, iluminando um vale verdejante repleto de fontes e crianças brincando (esperança). Ao fundo, uma pomba branca mergulha das alturas, deixando um rastro de luz que envolve o guerreiro. Estilo cinematográfico inspirado em 'Gladiador' e 'Ben-Hur', com iluminação Rembrandt, texturas hiper-realistas de metal enferrujado e pele suada, e simbolismos como correntes quebradas se transformando em grinaldas de flores."
Vídeo publicitario de 10 segundos, estilo cinematográfico. Escena 1 (0-4s): un profesor de mediana edad sentado en su mesa, agobiado, rodeado de pilas de exámenes en papel, post-its y una pizarra llena de tareas, luz fría y gris, cámara cerrada sobre su rostro cansado, ambiente caótico. Transición rápida tipo "flash" o disolución de luz cálida (4-5s). Escena 2 (5-10s): el mismo profesor, ahora relajado y sonriente, frente a un portátil abierto con una interfaz de IA limpia y minimalista, luz cálida y dorada, aula ordenada de fondo, gesto de alivio, plano final se mantiene estable unos segundos para dejar espacio a texto/logo en post-producción. Cámara estable, tono profesional pero cercano.
import bpy # Очистка сцены bpy.ops.object.select_all(action='SELECT') bpy.ops.object.delete(use_global=False) # Добавление плоскости для флага bpy.ops.mesh.primitive_plane_add(size=2, location=(0, 0, 0)) flag = bpy.context.object flag.name = "Korean Flag" # Применение текстуры флага Южной Кореи material = bpy.data.materials.new(name="FlagMaterial") material.use_nodes = True nodes = material.node_tree.nodes links = material.node_tree.links # Удаляем стандартный узел BSDF for node in nodes: nodes.remove(node) # Добавляем узел Image Texture image_texture = nodes.new(type='ShaderNodeTexImage') image_texture.image = bpy.data.images.load("//south_korea_flag.png") # Укажите путь к изображению флага image_texture.location = (-300, 300) # Узел Principled BSDF bsdf = nodes.new(type='ShaderNodeBsdfPrincipled') bsdf.location = (0, 300) # Узел Output output = nodes.new(type='ShaderNodeOutputMaterial') output.location = (300, 300) # Соединяем узлы links.new(image_texture.outputs['Color'], bsdf.inputs['Base Color']) links.new(bsdf.outputs['BSDF'], output.inputs['Surface']) # Присваиваем материал объекту flag.data.materials.append(material) # Добавление текста "Привет, Южная Корея!" bpy.ops.object.text_add(location=(0, -2, 0)) text = bpy.context.object text.data.body = "Hello, South Korea!" text.data.size = 0.5 text.data.extrude = 0.1 # Настройка камеры bpy.ops.object.camera_add(location=(0, -6, 2)) camera = bpy.context.object camera.rotation_euler = (1.2, 0, 0) bpy.context.scene.camera = camera # Настройка света bpy.ops.object.light_add(type='SUN', location=(5, -5, 5)) light = bpy.context.object # Рендеринг сцены bpy.context.scene.render.engine = 'CYCLES' bpy.context.scene.render.filepath = "//hello_south_korea.png" bpy.ops.render.render(write_still=True)
photography, dynamic shooting, distance range, Egyptian man ,buzz cut , upper-body, staring into the camera, enjoyable and smile, Used camera is Sony a9 ll with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, Egyptian army clothing, The nameplate on the uniform reads "Soldier / Ahmed Farag El Mahlawy", autumnal beach, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw -- personalize c84qxg1 --stylize 500--v 1 6.
photography, dynamic shooting, distance range, woman, 40 years old, upper-body, staring into the camera, enjoyable and smile, Used camera is Sony α9 II with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, autumnal park, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw --personalize c84qxg1 --stylize 500 --v 6. 1
photograph, long range shot, fashion model, male, seated on a chair, hairstyle is silver undercut, wearing black horn-rimmed glasses, some shaven face, his attire consists of a black loose-fit rolled up sleeves with arm medium gothic design cross tattoo and lettering tattoo, dyed black denim pants, by Richard Avedon, Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, capture the model’s confident, solid grey background photo studio, gaze into the camera, model is expressed in realistic photo, high contrast, highlighted lighting effects --ar 9:16 --style raw --s 700 --v 6
Specialized Bitumen Refining Plant Governorate: Anbar / Hit District Production Capacity: ( ) Tons/Day The city of Hit in the Anbar Governorate is considered one of the most famous areas in the world for its natural "bitumen springs," which have been used for thousands of years (dating back to the Babylonian and Assyrian eras). However, processing this bitumen for modern use requires technical steps to transform it from a raw material into a viable product for construction or industrial applications. Bitumen emerges from these springs as a highly viscous liquid mixed with sulfurous water, salts, and mud impurities. This "Natural Asphalt" differs from petroleum bitumen produced in refineries, and it can also appear in the form of rocky or spongy blocks mixed with mud. To obtain industrially usable products from this bitumen, specifically for: 1. Waterproofing (Felt/Membranes): Considered one of the best coating materials for building foundations to prevent moisture leakage due to its high resistance to hydrolysis. 2. Road Paving: Mixed with gravel and sand to produce asphalt concrete. It is characterized by exceptionally high cohesive strength compared to industrial bitumen. The natural bitumen from these springs must undergo several fundamental processing stages to become industrially viable: 1. Collection and Sedimentation: Bitumen is collected from the springs or quarry sites and left in designated basins to allow the sulfurous water to naturally separate (due to density differences). 2. Primary Heating: The raw bitumen is placed in large boilers to: a. Evaporate the remaining water. b. Reduce viscosity for easier handling. 3. Filtration and Purification: The heated bitumen is screened to remove solid impurities such as gravel, dirt, and suspended organic matter. 4. Secondary Heating and Cooking: The temperature of the bitumen is raised, improving agents are added, and it is prepared for the vacuum distillation process. 5. Vacuum Distillation: The distillation process is conducted under low pressure (vacuum pressure), which allows for: a. The separation of light oils and volatile substances at lower temperatures. b. The production of highly pure "Hard Asphalt," which is highly demanded in the construction industry. ________________________________________ Plant Components and Operational Stages The specialized bitumen plant for processing raw natural bitumen (in both liquid and solid states) consists of a range of specialized equipment designed according to the latest international standards. This equipment aligns with the technical and engineering requirements for bitumen products, complies with Iraqi standard specifications, and adheres to environmental considerations in the Anbar Governorate. 1. Extraction Stage The raw material (solid or liquid) is extracted from quarries designated by the Geological Survey Authority using specialized mechanical equipment. It is stored in stocks or special basins for solid materials, then transported to the refinery site using specialized transport vehicles of various capacities. 2. Storage Stage The raw materials are stored in designated yards to ensure a sufficient inventory for continuous, uninterrupted production for no less than 7 working days. 3. Raw Material Preparation and Primary Heating Stage Raw materials are fed into the plant via hydraulic lifts. This stage includes: • 3-1: Crushing and Digestion: Solid raw materials from the quarries are broken down and digested using a digester (SH-01) equipped with double blades driven by hydraulic motors (22.5 kW capacity). The digester is 5 meters long and 1.80 meters in diameter, made of carbon steel, with Stainless Steel 304 blades. It includes a Stainless Steel piston driven by a 7.5 kW electric motor. • 3-2: Primary Heating: This melts the bitumen and improves pumpability through pipes and pumps. • 3-3: Efficiency Enhancement: To increase melting efficiency, Gas Oil is added to the primary heating basin at a ratio of 1:5 per ton of solid raw material entering the basin (this ratio decreases when using liquid raw bitumen). o 3-2-1: Primary Melting Basin (TK-01): Raw material is heated in a concrete tank (25m L x 5m W x 3m H) with a maximum storage capacity of 300 tons. Heating pipes circulate thermal fluid (oil) at 125°C, with a retention time of 4-6 hours. The tank is internally lined with 6-8 mm carbon steel plates to protect the heating pipes from corrosion. It contains 8 Stainless Steel 304 mixers (MX-01 A/B/C/D/E/F) driven by 7.5 kW electric motors (50 RPM) and gearboxes (1:60 ratio) to mix the material, increase heating efficiency, reduce retention time, and circulate the melted bitumen to eliminate dissolved water, resulting in a homogeneous melt. Covered with a carbon steel roof with service hatches, it connects to an air duct (30x60 cm) linked to 2 air blowers (AB-01A/B) (one operating, one standby) at 22.5 kW / 1500 RPM. These extract water vapor and sulfur fumes, sending them to a scrubber before atmospheric release and water recycling. o 3-2-2: Primary Collection Tank (V-01): A carbon steel tank (12-14 mm thick) with a maximum capacity of 125 tons (10m L x 5m W x 3m H). It connects directly to the primary tank (TK-01) via channels and movable gates to receive only liquid raw material. It contains thermal oil pipes to maintain the liquid raw material at 140°C. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum outer cover. Impurities larger than 35 mm are removed and collected in a waste tank. o 3-2-3: Screw Conveyors (SC-01 A/B): Carbon steel screw conveyors with a double-jacketed outer cover filled with thermal oil to maintain the 140°C temperature. Driven by 22.5 kW electric motors (3000 RPM) with 1:40 gearboxes, they transport the liquid raw material to the preliminary filtration unit. 4. Purification Unit Removes suspended impurities from the liquid raw material in two stages: • 4-1: Preliminary Purification Tank (V-02): A carbon steel tank (12-14 mm thick, 125-ton capacity, 5m L x 10m W x 3m H). Receives liquid raw material from the primary collection tank. Contains thermal oil pipes to maintain 140°C. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum cover. Impurities larger than 15 mm are removed to a waste tank. Material is pumped to the final filtration stage via gear pumps (GP-01 A/B) (one operating, one standby) at 22.5 kW / 1000 RPM. • 4-2: Final Filtration Unit (FT-01): Removes remaining impurities by passing liquids through box filters arranged in 2 trains (8 per train). They feature a two-layer Stainless Steel filter mesh (specified microns) wrapped around square boxes. Liquid enters from the outside, and pure liquid is collected from the inside via a pipe network connected to a manifold. This is driven by two vacuum pumps (VP-01A/B) connected to the raw material tanks. 5. Raw Material Tanks (V-03 A-J) Ten carbon steel tanks (2.5m diameter, 9m length, 14 mm thickness, 45-ton max capacity) equipped with thermal oil heating coils. They receive, store, and prepare the purified raw material for the subsequent cooking reaction. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum cover. Connected by a pipe/valve network, the material is pumped via two centrifugal pumps (P-01 A/B) at 22.5 kW / 3000 RPM to the reactor unit. The tanks connect to a pipe network driven by vacuum pumps (VP-01A/B) at 22.5 kW / 1500 RPM, pushing heating gases and vapors to the gas washing tank (V-14). 6. Reactor (Cooking) Unit (V-04 A/B) Consists of three reactors (55 tons each) that prepare the raw material for vacuum distillation and extract light naphtha compounds. • 6-1: Cooking Process: o 6-1-1: Catalyst System: Consists of two tanks. One prepares the catalyst mixture (1.5m dia, 4m H, 8mm carbon steel) with a mixer (MX-03) driven by a hydromotor and 1:40 gearbox. The second stores Gas Oil added to the preparation unit (1.5m dia, 1m H, 5mm carbon steel) with a 0.5 HP centrifugal pump. o 6-1-2: Reaction Tanks (V-04/05/06A): Three carbon steel tanks (2.8m dia, 9m L, 14mm thick, 55-ton max). Each has 2 Stainless Steel mixers (MX-02 A/B/C/D/E/F) driven by a 7.5 kW motor (1500 RPM) with a 1:40 gearbox. Contains an internal heating system powered by a Gas Oil burner to raise the temperature to 180°C. Catalyst is injected via dosing pumps (DP-01A/B) to increase naphtha extraction efficiency. Material is circulated during cooking by two centrifugal pumps per reactor (P-04A/B/C/D/E/F) (one active, one standby) to reduce retention time to 3-4 hours. After cooking, material is moved to the attached tank (V-04/05/06B) for storage before distillation. Fully insulated. o 6-1-3: Cooked Material Tank (V-04/05/06B): Carbon steel tank (2.8m dia, 9m L, 14mm thick) with thermal oil pipes to maintain 190-200°C. Fully insulated. Material is pumped to the vacuum distillation tower via centrifugal pumps (P-05A/B) (one active, one standby) at 22.5 kW / 3000 RPM. 7. Raw Naphtha Storage Unit Collects and condenses naphtha extracted during cooking. • 7-1-1: Raw Naphtha Tanks (V-07A/B/C): Three vertical Stainless Steel 304 tanks (1.5m dia, 5m H) connected to three heat exchangers and two pump pairs. Equipped internally with water spray nozzles on a ring pipe to wash non-condensable gases. • 7-1-2: Heat Exchangers (HE-01A/B/C): Condense naphtha vapors from 140°C down to 40°C using water from the cooling tower. Connected in series. Shell & Tube type, carbon steel (510 mm dia, 6m L) with 70 tubes (0.75-inch dia) in two rows of 35. Includes internal baffles for efficiency. • 7-1-3: Supporting Pumps: Vacuum pumps (VP-01A/B) at 22.5 kW / 1500 RPM draw naphtha vapors from reactors to the heat exchangers, pushing non-condensable gases to the scrubber (V-14). Centrifugal pumps (P-02A/B) at 11.5 kW / 1500 RPM transport liquid raw naphtha to the Bleaching Unit. 8. Vacuum Distillation Unit The core of the plant, separating remaining light compounds and producing hard asphalt. • 8-1-1: Vacuum Distillation Tower: A vertical tower (~16m total height, 14mm carbon steel). Bottom section (Reboiler) is 3.5m dia x 1.2m H; top section is 1.5m dia x 12m H. Fully insulated. Fed with cooked material at 190-200°C via pumps (P-05A/B). To start extraction (remaining naphtha, Gas Oil, diesel), temperature is raised to 240-250°C using Heating Coil 1 via pumps (P-08A/B) at 55 kW / 3000 RPM, with continuous circulation via pumps (P-07A/B). Vacuum pumps (VP-03A/B) maintain 0.3-0.5 mbar pressure. Light compounds are extracted, condensed (HE-02A/B/C), and stored (V-08/09/10 A/B) over 2.5-3 hours. Afterward, material is heated via Heating Coil 2 to 320-340°C to finalize extraction and produce hard bitumen. Product is extracted via pumps (P-07A/B) at ~320°C, cooled via cooling tower coils, and sent to final tanks (V-18A/B/C). Batch processing takes 6-7 hours daily; continuous operation is possible. • 8-1-2: Supporting Pumps: Vacuum pumps (VP-03A/B) at 5.5 kW / 3000 RPM draw light vapors for condensation. Circulation centrifugal pumps (P-08A/B) at 55 kW move hot material to heating coils; (P-07A/B) circulate material and pump final bitumen product. • 8-1-3: Heating Coils 1 & 2: Carbon steel 4-inch diameter coils heated externally by a Gas Oil burner. Connected in series to heat liquid bitumen in two stages to prevent degradation. • 8-2: Heat Exchangers (HE-02A/B/C): Condense light compound vapors from 240°C to 40°C. Shell & Tube type, carbon steel (600 mm dia, 6m L) with 80 tubes (1-inch dia) in two rows of 40, equipped with baffles. • 8-3: Light Compound Tanks (V-08A/B, V-09A/B, V-10A/B): Six horizontal carbon steel tanks (1.5m dia, 4.5m L, 14mm thick). Receive condensates, linked to heat exchangers and vacuum pumps. Liquids are pumped to the Bleaching Unit via centrifugal pumps (P-06A/B) at 7.5 kW / 1500 RPM. 9. Bleaching Unit Improves the specifications of raw light compounds for local use and marketing. • 9-1: Collection Tank (V-11): Horizontal carbon steel tank (1m dia, 2.5m L, 14mm thick) placed above the system to store and distribute light compounds to the bleaching columns. • 9-2: Bleaching Columns (V-12A/B/C): Three vertical carbon steel vessels (1m dia, 4.5m H, 14mm thick). Contain a 15 cm catalyst layer on trays to bleach raw liquids into high-quality compounds, collected in a bottom horizontal tank. The catalyst is a calcined mixture of Bentonite and Zinc Oxide granules (2-3 mm) homogenized in water, which can be reactivated with steam and 5% HCl. • 9-3: Supporting Pumps: Vacuum pumps (VP-04A/B) at 5.5 kW extract vapors to the scrubber. Centrifugal pumps (P-09A/B) at 7.5 kW push bleached liquids to final tanks. 10. Production Tanks (V-13 A-F & V-18 A-C) • Light Products: Six horizontal carbon steel tanks (2.8m dia, 9m L, 55-ton capacity). V-13A/B for light naphtha, V-13C/D for Gas Oil, V-13E/F for diesel. • Asphalt: Three vertical carbon steel tanks (V-18A/B/C) (5m dia, 9m H). Equipped with thermal oil heating coils to keep asphalt liquid. Fully insulated (90 kg/m³ glass wool, 1.8mm aluminum cover). 11. Supporting Systems • 11-1: Gas Washing (Scrubber) System: Treats non-condensable gases before atmospheric release. Contains V-14 washing tank (1m dia, 2.8m L), a 500mm Flare stack with 3 ignitors, and a 1m x 1m LPG tank (V-15) for ignition. • 11-2: Cooling Tower: Provides cooling water for heat exchangers. Galvanized pressed steel basin (16m L x 2.4m W x 2.8m H), FRP casing, top fans, water distributors, and fill media. Includes Accumulator tank V-20 (1.5m dia, 2m L) and 11 kW pushing pumps (P-14A/B). • 11-3: Thermal Oil Boilers: Includes oil tank, heating boiler, oil pumps, and heating accelerators. • 11-4: Distillation Tower Raw Boilers • 11-5: Power Generation System • 11-6: Production Laboratory • 11-7: Control and Operation Room • 11-8: Catalyst System: Contains a vertical diesel tank (1m dia, 1.5m H) with a 1 kW centrifugal pump (P-11). Two vertical carbon steel tanks (V-17A/B, 1.5m dia, 4.5m H) with an MX-03 hydromotor mixer (7.5 kW, 30 RPM). V-17A is for preparation, V-17B pumps catalyst to the reactor. ________________________________________ Catalyst Chemical Components & Formulations 1. Alumina (Al2O3): Enhances the cracking of chemical bonds in heavy bitumen chains and increases Gas Oil extraction yield. 2. Manganese Dioxide (MnO2): Accelerates the reaction, reduces reaction time, and acts as a gasoline improver. 3. Silicon Dioxide (SiO2): Increases acceleration and reduces reaction time. 4. Iron Oxides (Fe2O): Accelerates the reaction, prevents pipe corrosion, and stops sulfur and wax from sticking to pipes and pumps. Weight Ratios (WT/WT) to Produce One Barrel (200 Liters) of Catalyst: 1. Alumina: Varies by feed: 2-2.5% for Bitumen / 4-5% for Vacuum Residue (VR) / 2-2.5% for Heavy Fuel Oil (HFO). To increase Gas Oil/Diesel (Light fuel) yield, Alumina can be added up to a maximum of 10%. 2. Manganese Dioxide: 2-2.5% for HFO / 4-5% for VR and Bitumen. 3. Iron Oxides: 2-2.5% across all feeds. 4. Silicon Dioxide: 2-2.5% for HFO / 4-5% for Bitumen and VR. 5. Remaining Volume: Filled with C-oil. Note: One barrel (200 Liters) of this mixture is added for every 5 tons of HFO, VR, or Bitumen. Manufacturing Mechanism: All components are placed in a tank, initially mixed with water, and heated to 80-120°C with continuous mixing (20-30 RPM). Once foam is generated, the product is allowed to cool to 80°C. The heating process up to 120°C is repeated 3 or 4 times until foaming ceases. Finally, the temperature is raised to 150°C, and the mixture is topped off to 200 liters using C-oil. To further improve light compound specifications, Zinc Oxide (300 grams) is mixed with 20 kg of Bentonite in C-oil. This is added alongside the catalyst at a ratio of 1/5 barrel of catalyst added to the reactor.
photograph, long range shot, fashion model, male, seated on a chair, hairstyle is silver undercut, wearing black horn-rimmed glasses, some shaven face, his attire consists of a black loose-fit rolled up sleeves with arm medium gothic design cross tattoo and lettering tattoo, dyed black denim pants, by Richard Avedon, Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, capture the model’s confident, solid grey background photo studio, gaze into the camera, model is expressed in realistic photo, high contrast, highlighted lighting effects --ar 9:16 --style raw --s 700 --v 6
photography, dynamic shooting, distance range, Egyptian man, , age 25 ,upper-body,setting is an open, minimalistic space with soft, neutral color scheme that accentuates the motion blur, sharply in focus, contrasting with the transient figures around him, highlighting the theme of stillness amidst chaos. street mood to keep the attention on the motion effect background,staring into the camera, enjoyable and smile, Used camera is Sony a9 ll with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, surrounded by a blurred motion of multiple people walking past him, movement, wearing black color loose fit hoodie and khaki jogger pants with red color Vans high- top sneakers, sub models is monochromatic red silhouette,, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw -- personalize c84qxg1 --stylize 500--v 1 6.
photograph, front view, donald trump, standing on solid grey background, gaze into the camera, wrinkles on the forehead, by Richard Avedon style, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, wearing black suit with with white shirt and red tie, showing thumbs up realistic photography, high contrast --ar 9:16 --style raw
"Cena de filme bíblico épico: um guerreiro ferido "PAULO", vestindo uma armadura marcada por batalhas, avança por um deserto de areia movediça sob um céu carregado de trovões. Cada passo afunda (tribulação), mas em seu rastro, florescem cristais translúcidos que formam um caminho sólido (perseverança). À frente, uma escadaria íngreme de pedra lascada leva a um templo em ruínas, onde suas mãos cicatrizadas reconstroem lentamente os pilares (experiência). No topo, uma mulher idosa vestida como profetisa segura um pergaminho aberto com Romanos 5:3-5 escrito em hebraico antigo, enquanto um sol dourado rompe as nuvens, iluminando um vale verdejante repleto de fontes e crianças brincando (esperança). Ao fundo, uma pomba branca mergulha das alturas, deixando um rastro de luz que envolve o guerreiro. Estilo cinematográfico inspirado em 'Gladiador' e 'Ben-Hur', com iluminação Rembrandt, texturas hiper-realistas de metal enferrujado e pele suada, e simbolismos como correntes quebradas se transformando em grinaldas de flores."
"Cena de filme bíblico épico: um guerreiro ferido, vestindo uma armadura marcada por batalhas, avança por um deserto de areia movediça sob um céu carregado de trovões. Cada passo afunda (tribulação), mas em seu rastro, florescem cristais translúcidos que formam um caminho sólido (perseverança). À frente, uma escadaria íngreme de pedra lascada leva a um templo em ruínas, onde suas mãos cicatrizadas reconstroem lentamente os pilares (experiência). No topo, uma mulher idosa vestida como profetisa segura um pergaminho aberto com Romanos 5:3-5 escrito em hebraico antigo, enquanto um sol dourado rompe as nuvens, iluminando um vale verdejante repleto de fontes e crianças brincando (esperança). Ao fundo, uma pomba branca mergulha das alturas, deixando um rastro de luz que envolve o guerreiro. Estilo cinematográfico inspirado em 'Gladiador' e 'Ben-Hur', com iluminação Rembrandt, texturas hiper-realistas de metal enferrujado e pele suada, e simbolismos como correntes quebradas se transformando em grinaldas de flores."
Generate a fashion editorial, high resolution photography, close detail shot, professional fashion model, thick zip up clothes to the end, covered nose and mouth, her beautiful eyes look at the camera provocatively, mixture of minimal fabric and metal materials of techwear, Sony α9 II, FE 100-400mm f/4. 5-5. 6 GM OSS lens, the backdrop is a solid black background, providing a neutral and non-distracting background that accentuates the model's features, realism lights
photography, dynamic shooting, distance range, woman, 40 years old, upper-body, staring into the camera, enjoyable and smile, Used camera is Sony α9 II with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, autumnal park, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw --personalize c84qxg1 --stylize 500 --v 6. 1
photograph, front view, donald trump, standing on solid grey background, gaze into the camera, wrinkles on the forehead, by Richard Avedon style, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, wearing black suit with with white shirt and red tie, showing thumbs up realistic photography, high contrast --ar 9:16 --style raw
focused man model, high resolution photograph, used camera Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, emulating a high-contrast, positioned straight on for a candid shot, natural sunlighting through a large window, wearing red polo t-shirt, looking left side, orange juice at the dinner table, high detailing, realistic, UHD --ar 9:16 --style raw --stylize 300
Generate this image: product editorial for fashion magazine. High resolution photograph. Shot by a professional photographer. A photorealistic image of exclusive facial cream jar with a sleek, silver cap, placed against a dark-to-light brown gradient background. The image must suggests luxury. The spot light is casting some shadows like natural sunlight. Minimalist aesthetic, subtle branding, showcases style and design innovation. Main studio Light set is a tall Softbox is lighting from the left. Style: realistic, product shot. Sony α9 II, FE 100-400mm f/4. 5-5. 6 GM OSS lens
photography, low shot, female skateboarder is captured mid-flight above a skatepark ramp, cap backward and flowing curly hair that defies gravity, fitted white long sleeves and dark green cargo jogger pants, skateboarder's feet are snug in pristine skate shoes, and their board is a canvas of adventure with colorful stickers and the tale-telling scuffs of a well-used deck, wheels show signs of a life ridden hard, bright blue sky, the sun casting a radiant outline around the airborne figure, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, realism light and shadows --ar 9:16 --s 500
Vídeo publicitario de 10 segundos, estilo cinematográfico. Escena 1 (0-4s): un profesor de mediana edad sentado en su mesa, agobiado, rodeado de pilas de exámenes en papel, post-its y una pizarra llena de tareas, luz fría y gris, cámara cerrada sobre su rostro cansado, ambiente caótico. Transición rápida tipo "flash" o disolución de luz cálida (4-5s). Escena 2 (5-10s): el mismo profesor, ahora relajado y sonriente, frente a un portátil abierto con una interfaz de IA limpia y minimalista, luz cálida y dorada, aula ordenada de fondo, gesto de alivio, plano final se mantiene estable unos segundos para dejar espacio a texto/logo en post-producción. Cámara estable, tono profesional pero cercano.
import bpy # Очистка сцены bpy.ops.object.select_all(action='SELECT') bpy.ops.object.delete(use_global=False) # Добавление плоскости для флага bpy.ops.mesh.primitive_plane_add(size=2, location=(0, 0, 0)) flag = bpy.context.object flag.name = "Korean Flag" # Применение текстуры флага Южной Кореи material = bpy.data.materials.new(name="FlagMaterial") material.use_nodes = True nodes = material.node_tree.nodes links = material.node_tree.links # Удаляем стандартный узел BSDF for node in nodes: nodes.remove(node) # Добавляем узел Image Texture image_texture = nodes.new(type='ShaderNodeTexImage') image_texture.image = bpy.data.images.load("//south_korea_flag.png") # Укажите путь к изображению флага image_texture.location = (-300, 300) # Узел Principled BSDF bsdf = nodes.new(type='ShaderNodeBsdfPrincipled') bsdf.location = (0, 300) # Узел Output output = nodes.new(type='ShaderNodeOutputMaterial') output.location = (300, 300) # Соединяем узлы links.new(image_texture.outputs['Color'], bsdf.inputs['Base Color']) links.new(bsdf.outputs['BSDF'], output.inputs['Surface']) # Присваиваем материал объекту flag.data.materials.append(material) # Добавление текста "Привет, Южная Корея!" bpy.ops.object.text_add(location=(0, -2, 0)) text = bpy.context.object text.data.body = "Hello, South Korea!" text.data.size = 0.5 text.data.extrude = 0.1 # Настройка камеры bpy.ops.object.camera_add(location=(0, -6, 2)) camera = bpy.context.object camera.rotation_euler = (1.2, 0, 0) bpy.context.scene.camera = camera # Настройка света bpy.ops.object.light_add(type='SUN', location=(5, -5, 5)) light = bpy.context.object # Рендеринг сцены bpy.context.scene.render.engine = 'CYCLES' bpy.context.scene.render.filepath = "//hello_south_korea.png" bpy.ops.render.render(write_still=True)
photography, dynamic shooting, distance range, woman, 40 years old, upper-body, staring into the camera, enjoyable and smile, Used camera is Sony α9 II with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, autumnal park, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw --personalize c84qxg1 --stylize 500 --v 6. 1
focused man model, high resolution photograph, used camera Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, emulating a high-contrast, positioned straight on for a candid shot, natural sunlighting through a large window, wearing red polo t-shirt, looking left side, orange juice at the dinner table, high detailing, realistic, UHD --ar 9:16 --style raw --stylize 300
photograph, long range shot, fashion model, male, seated on a chair, hairstyle is silver undercut, wearing black horn-rimmed glasses, some shaven face, his attire consists of a black loose-fit rolled up sleeves with arm medium gothic design cross tattoo and lettering tattoo, dyed black denim pants, by Richard Avedon, Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, capture the model’s confident, solid grey background photo studio, gaze into the camera, model is expressed in realistic photo, high contrast, highlighted lighting effects --ar 9:16 --style raw --s 700 --v 6
photography, low shot, female skateboarder is captured mid-flight above a skatepark ramp, cap backward and flowing curly hair that defies gravity, fitted white long sleeves and dark green cargo jogger pants, skateboarder's feet are snug in pristine skate shoes, and their board is a canvas of adventure with colorful stickers and the tale-telling scuffs of a well-used deck, wheels show signs of a life ridden hard, bright blue sky, the sun casting a radiant outline around the airborne figure, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, realism light and shadows --ar 9:16 --s 500
Specialized Bitumen Refining Plant Governorate: Anbar / Hit District Production Capacity: ( ) Tons/Day The city of Hit in the Anbar Governorate is considered one of the most famous areas in the world for its natural "bitumen springs," which have been used for thousands of years (dating back to the Babylonian and Assyrian eras). However, processing this bitumen for modern use requires technical steps to transform it from a raw material into a viable product for construction or industrial applications. Bitumen emerges from these springs as a highly viscous liquid mixed with sulfurous water, salts, and mud impurities. This "Natural Asphalt" differs from petroleum bitumen produced in refineries, and it can also appear in the form of rocky or spongy blocks mixed with mud. To obtain industrially usable products from this bitumen, specifically for: 1. Waterproofing (Felt/Membranes): Considered one of the best coating materials for building foundations to prevent moisture leakage due to its high resistance to hydrolysis. 2. Road Paving: Mixed with gravel and sand to produce asphalt concrete. It is characterized by exceptionally high cohesive strength compared to industrial bitumen. The natural bitumen from these springs must undergo several fundamental processing stages to become industrially viable: 1. Collection and Sedimentation: Bitumen is collected from the springs or quarry sites and left in designated basins to allow the sulfurous water to naturally separate (due to density differences). 2. Primary Heating: The raw bitumen is placed in large boilers to: a. Evaporate the remaining water. b. Reduce viscosity for easier handling. 3. Filtration and Purification: The heated bitumen is screened to remove solid impurities such as gravel, dirt, and suspended organic matter. 4. Secondary Heating and Cooking: The temperature of the bitumen is raised, improving agents are added, and it is prepared for the vacuum distillation process. 5. Vacuum Distillation: The distillation process is conducted under low pressure (vacuum pressure), which allows for: a. The separation of light oils and volatile substances at lower temperatures. b. The production of highly pure "Hard Asphalt," which is highly demanded in the construction industry. ________________________________________ Plant Components and Operational Stages The specialized bitumen plant for processing raw natural bitumen (in both liquid and solid states) consists of a range of specialized equipment designed according to the latest international standards. This equipment aligns with the technical and engineering requirements for bitumen products, complies with Iraqi standard specifications, and adheres to environmental considerations in the Anbar Governorate. 1. Extraction Stage The raw material (solid or liquid) is extracted from quarries designated by the Geological Survey Authority using specialized mechanical equipment. It is stored in stocks or special basins for solid materials, then transported to the refinery site using specialized transport vehicles of various capacities. 2. Storage Stage The raw materials are stored in designated yards to ensure a sufficient inventory for continuous, uninterrupted production for no less than 7 working days. 3. Raw Material Preparation and Primary Heating Stage Raw materials are fed into the plant via hydraulic lifts. This stage includes: • 3-1: Crushing and Digestion: Solid raw materials from the quarries are broken down and digested using a digester (SH-01) equipped with double blades driven by hydraulic motors (22.5 kW capacity). The digester is 5 meters long and 1.80 meters in diameter, made of carbon steel, with Stainless Steel 304 blades. It includes a Stainless Steel piston driven by a 7.5 kW electric motor. • 3-2: Primary Heating: This melts the bitumen and improves pumpability through pipes and pumps. • 3-3: Efficiency Enhancement: To increase melting efficiency, Gas Oil is added to the primary heating basin at a ratio of 1:5 per ton of solid raw material entering the basin (this ratio decreases when using liquid raw bitumen). o 3-2-1: Primary Melting Basin (TK-01): Raw material is heated in a concrete tank (25m L x 5m W x 3m H) with a maximum storage capacity of 300 tons. Heating pipes circulate thermal fluid (oil) at 125°C, with a retention time of 4-6 hours. The tank is internally lined with 6-8 mm carbon steel plates to protect the heating pipes from corrosion. It contains 8 Stainless Steel 304 mixers (MX-01 A/B/C/D/E/F) driven by 7.5 kW electric motors (50 RPM) and gearboxes (1:60 ratio) to mix the material, increase heating efficiency, reduce retention time, and circulate the melted bitumen to eliminate dissolved water, resulting in a homogeneous melt. Covered with a carbon steel roof with service hatches, it connects to an air duct (30x60 cm) linked to 2 air blowers (AB-01A/B) (one operating, one standby) at 22.5 kW / 1500 RPM. These extract water vapor and sulfur fumes, sending them to a scrubber before atmospheric release and water recycling. o 3-2-2: Primary Collection Tank (V-01): A carbon steel tank (12-14 mm thick) with a maximum capacity of 125 tons (10m L x 5m W x 3m H). It connects directly to the primary tank (TK-01) via channels and movable gates to receive only liquid raw material. It contains thermal oil pipes to maintain the liquid raw material at 140°C. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum outer cover. Impurities larger than 35 mm are removed and collected in a waste tank. o 3-2-3: Screw Conveyors (SC-01 A/B): Carbon steel screw conveyors with a double-jacketed outer cover filled with thermal oil to maintain the 140°C temperature. Driven by 22.5 kW electric motors (3000 RPM) with 1:40 gearboxes, they transport the liquid raw material to the preliminary filtration unit. 4. Purification Unit Removes suspended impurities from the liquid raw material in two stages: • 4-1: Preliminary Purification Tank (V-02): A carbon steel tank (12-14 mm thick, 125-ton capacity, 5m L x 10m W x 3m H). Receives liquid raw material from the primary collection tank. Contains thermal oil pipes to maintain 140°C. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum cover. Impurities larger than 15 mm are removed to a waste tank. Material is pumped to the final filtration stage via gear pumps (GP-01 A/B) (one operating, one standby) at 22.5 kW / 1000 RPM. • 4-2: Final Filtration Unit (FT-01): Removes remaining impurities by passing liquids through box filters arranged in 2 trains (8 per train). They feature a two-layer Stainless Steel filter mesh (specified microns) wrapped around square boxes. Liquid enters from the outside, and pure liquid is collected from the inside via a pipe network connected to a manifold. This is driven by two vacuum pumps (VP-01A/B) connected to the raw material tanks. 5. Raw Material Tanks (V-03 A-J) Ten carbon steel tanks (2.5m diameter, 9m length, 14 mm thickness, 45-ton max capacity) equipped with thermal oil heating coils. They receive, store, and prepare the purified raw material for the subsequent cooking reaction. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum cover. Connected by a pipe/valve network, the material is pumped via two centrifugal pumps (P-01 A/B) at 22.5 kW / 3000 RPM to the reactor unit. The tanks connect to a pipe network driven by vacuum pumps (VP-01A/B) at 22.5 kW / 1500 RPM, pushing heating gases and vapors to the gas washing tank (V-14). 6. Reactor (Cooking) Unit (V-04 A/B) Consists of three reactors (55 tons each) that prepare the raw material for vacuum distillation and extract light naphtha compounds. • 6-1: Cooking Process: o 6-1-1: Catalyst System: Consists of two tanks. One prepares the catalyst mixture (1.5m dia, 4m H, 8mm carbon steel) with a mixer (MX-03) driven by a hydromotor and 1:40 gearbox. The second stores Gas Oil added to the preparation unit (1.5m dia, 1m H, 5mm carbon steel) with a 0.5 HP centrifugal pump. o 6-1-2: Reaction Tanks (V-04/05/06A): Three carbon steel tanks (2.8m dia, 9m L, 14mm thick, 55-ton max). Each has 2 Stainless Steel mixers (MX-02 A/B/C/D/E/F) driven by a 7.5 kW motor (1500 RPM) with a 1:40 gearbox. Contains an internal heating system powered by a Gas Oil burner to raise the temperature to 180°C. Catalyst is injected via dosing pumps (DP-01A/B) to increase naphtha extraction efficiency. Material is circulated during cooking by two centrifugal pumps per reactor (P-04A/B/C/D/E/F) (one active, one standby) to reduce retention time to 3-4 hours. After cooking, material is moved to the attached tank (V-04/05/06B) for storage before distillation. Fully insulated. o 6-1-3: Cooked Material Tank (V-04/05/06B): Carbon steel tank (2.8m dia, 9m L, 14mm thick) with thermal oil pipes to maintain 190-200°C. Fully insulated. Material is pumped to the vacuum distillation tower via centrifugal pumps (P-05A/B) (one active, one standby) at 22.5 kW / 3000 RPM. 7. Raw Naphtha Storage Unit Collects and condenses naphtha extracted during cooking. • 7-1-1: Raw Naphtha Tanks (V-07A/B/C): Three vertical Stainless Steel 304 tanks (1.5m dia, 5m H) connected to three heat exchangers and two pump pairs. Equipped internally with water spray nozzles on a ring pipe to wash non-condensable gases. • 7-1-2: Heat Exchangers (HE-01A/B/C): Condense naphtha vapors from 140°C down to 40°C using water from the cooling tower. Connected in series. Shell & Tube type, carbon steel (510 mm dia, 6m L) with 70 tubes (0.75-inch dia) in two rows of 35. Includes internal baffles for efficiency. • 7-1-3: Supporting Pumps: Vacuum pumps (VP-01A/B) at 22.5 kW / 1500 RPM draw naphtha vapors from reactors to the heat exchangers, pushing non-condensable gases to the scrubber (V-14). Centrifugal pumps (P-02A/B) at 11.5 kW / 1500 RPM transport liquid raw naphtha to the Bleaching Unit. 8. Vacuum Distillation Unit The core of the plant, separating remaining light compounds and producing hard asphalt. • 8-1-1: Vacuum Distillation Tower: A vertical tower (~16m total height, 14mm carbon steel). Bottom section (Reboiler) is 3.5m dia x 1.2m H; top section is 1.5m dia x 12m H. Fully insulated. Fed with cooked material at 190-200°C via pumps (P-05A/B). To start extraction (remaining naphtha, Gas Oil, diesel), temperature is raised to 240-250°C using Heating Coil 1 via pumps (P-08A/B) at 55 kW / 3000 RPM, with continuous circulation via pumps (P-07A/B). Vacuum pumps (VP-03A/B) maintain 0.3-0.5 mbar pressure. Light compounds are extracted, condensed (HE-02A/B/C), and stored (V-08/09/10 A/B) over 2.5-3 hours. Afterward, material is heated via Heating Coil 2 to 320-340°C to finalize extraction and produce hard bitumen. Product is extracted via pumps (P-07A/B) at ~320°C, cooled via cooling tower coils, and sent to final tanks (V-18A/B/C). Batch processing takes 6-7 hours daily; continuous operation is possible. • 8-1-2: Supporting Pumps: Vacuum pumps (VP-03A/B) at 5.5 kW / 3000 RPM draw light vapors for condensation. Circulation centrifugal pumps (P-08A/B) at 55 kW move hot material to heating coils; (P-07A/B) circulate material and pump final bitumen product. • 8-1-3: Heating Coils 1 & 2: Carbon steel 4-inch diameter coils heated externally by a Gas Oil burner. Connected in series to heat liquid bitumen in two stages to prevent degradation. • 8-2: Heat Exchangers (HE-02A/B/C): Condense light compound vapors from 240°C to 40°C. Shell & Tube type, carbon steel (600 mm dia, 6m L) with 80 tubes (1-inch dia) in two rows of 40, equipped with baffles. • 8-3: Light Compound Tanks (V-08A/B, V-09A/B, V-10A/B): Six horizontal carbon steel tanks (1.5m dia, 4.5m L, 14mm thick). Receive condensates, linked to heat exchangers and vacuum pumps. Liquids are pumped to the Bleaching Unit via centrifugal pumps (P-06A/B) at 7.5 kW / 1500 RPM. 9. Bleaching Unit Improves the specifications of raw light compounds for local use and marketing. • 9-1: Collection Tank (V-11): Horizontal carbon steel tank (1m dia, 2.5m L, 14mm thick) placed above the system to store and distribute light compounds to the bleaching columns. • 9-2: Bleaching Columns (V-12A/B/C): Three vertical carbon steel vessels (1m dia, 4.5m H, 14mm thick). Contain a 15 cm catalyst layer on trays to bleach raw liquids into high-quality compounds, collected in a bottom horizontal tank. The catalyst is a calcined mixture of Bentonite and Zinc Oxide granules (2-3 mm) homogenized in water, which can be reactivated with steam and 5% HCl. • 9-3: Supporting Pumps: Vacuum pumps (VP-04A/B) at 5.5 kW extract vapors to the scrubber. Centrifugal pumps (P-09A/B) at 7.5 kW push bleached liquids to final tanks. 10. Production Tanks (V-13 A-F & V-18 A-C) • Light Products: Six horizontal carbon steel tanks (2.8m dia, 9m L, 55-ton capacity). V-13A/B for light naphtha, V-13C/D for Gas Oil, V-13E/F for diesel. • Asphalt: Three vertical carbon steel tanks (V-18A/B/C) (5m dia, 9m H). Equipped with thermal oil heating coils to keep asphalt liquid. Fully insulated (90 kg/m³ glass wool, 1.8mm aluminum cover). 11. Supporting Systems • 11-1: Gas Washing (Scrubber) System: Treats non-condensable gases before atmospheric release. Contains V-14 washing tank (1m dia, 2.8m L), a 500mm Flare stack with 3 ignitors, and a 1m x 1m LPG tank (V-15) for ignition. • 11-2: Cooling Tower: Provides cooling water for heat exchangers. Galvanized pressed steel basin (16m L x 2.4m W x 2.8m H), FRP casing, top fans, water distributors, and fill media. Includes Accumulator tank V-20 (1.5m dia, 2m L) and 11 kW pushing pumps (P-14A/B). • 11-3: Thermal Oil Boilers: Includes oil tank, heating boiler, oil pumps, and heating accelerators. • 11-4: Distillation Tower Raw Boilers • 11-5: Power Generation System • 11-6: Production Laboratory • 11-7: Control and Operation Room • 11-8: Catalyst System: Contains a vertical diesel tank (1m dia, 1.5m H) with a 1 kW centrifugal pump (P-11). Two vertical carbon steel tanks (V-17A/B, 1.5m dia, 4.5m H) with an MX-03 hydromotor mixer (7.5 kW, 30 RPM). V-17A is for preparation, V-17B pumps catalyst to the reactor. ________________________________________ Catalyst Chemical Components & Formulations 1. Alumina (Al2O3): Enhances the cracking of chemical bonds in heavy bitumen chains and increases Gas Oil extraction yield. 2. Manganese Dioxide (MnO2): Accelerates the reaction, reduces reaction time, and acts as a gasoline improver. 3. Silicon Dioxide (SiO2): Increases acceleration and reduces reaction time. 4. Iron Oxides (Fe2O): Accelerates the reaction, prevents pipe corrosion, and stops sulfur and wax from sticking to pipes and pumps. Weight Ratios (WT/WT) to Produce One Barrel (200 Liters) of Catalyst: 1. Alumina: Varies by feed: 2-2.5% for Bitumen / 4-5% for Vacuum Residue (VR) / 2-2.5% for Heavy Fuel Oil (HFO). To increase Gas Oil/Diesel (Light fuel) yield, Alumina can be added up to a maximum of 10%. 2. Manganese Dioxide: 2-2.5% for HFO / 4-5% for VR and Bitumen. 3. Iron Oxides: 2-2.5% across all feeds. 4. Silicon Dioxide: 2-2.5% for HFO / 4-5% for Bitumen and VR. 5. Remaining Volume: Filled with C-oil. Note: One barrel (200 Liters) of this mixture is added for every 5 tons of HFO, VR, or Bitumen. Manufacturing Mechanism: All components are placed in a tank, initially mixed with water, and heated to 80-120°C with continuous mixing (20-30 RPM). Once foam is generated, the product is allowed to cool to 80°C. The heating process up to 120°C is repeated 3 or 4 times until foaming ceases. Finally, the temperature is raised to 150°C, and the mixture is topped off to 200 liters using C-oil. To further improve light compound specifications, Zinc Oxide (300 grams) is mixed with 20 kg of Bentonite in C-oil. This is added alongside the catalyst at a ratio of 1/5 barrel of catalyst added to the reactor.
Generate this image: product editorial for fashion magazine. High resolution photograph. Shot by a professional photographer. A photorealistic image of exclusive facial cream jar with a sleek, silver cap, placed against a dark-to-light brown gradient background. The image must suggests luxury. The spot light is casting some shadows like natural sunlight. Minimalist aesthetic, subtle branding, showcases style and design innovation. Main studio Light set is a tall Softbox is lighting from the left. Style: realistic, product shot. Sony α9 II, FE 100-400mm f/4. 5-5. 6 GM OSS lens
photograph, front view, donald trump, standing on solid grey background, gaze into the camera, wrinkles on the forehead, by Richard Avedon style, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, wearing black suit with with white shirt and red tie, showing thumbs up realistic photography, high contrast --ar 9:16 --style raw
"Cena de filme bíblico épico: um guerreiro ferido "PAULO", vestindo uma armadura marcada por batalhas, avança por um deserto de areia movediça sob um céu carregado de trovões. Cada passo afunda (tribulação), mas em seu rastro, florescem cristais translúcidos que formam um caminho sólido (perseverança). À frente, uma escadaria íngreme de pedra lascada leva a um templo em ruínas, onde suas mãos cicatrizadas reconstroem lentamente os pilares (experiência). No topo, uma mulher idosa vestida como profetisa segura um pergaminho aberto com Romanos 5:3-5 escrito em hebraico antigo, enquanto um sol dourado rompe as nuvens, iluminando um vale verdejante repleto de fontes e crianças brincando (esperança). Ao fundo, uma pomba branca mergulha das alturas, deixando um rastro de luz que envolve o guerreiro. Estilo cinematográfico inspirado em 'Gladiador' e 'Ben-Hur', com iluminação Rembrandt, texturas hiper-realistas de metal enferrujado e pele suada, e simbolismos como correntes quebradas se transformando em grinaldas de flores."
Vídeo publicitario de 10 segundos, estilo cinematográfico. Escena 1 (0-4s): un profesor de mediana edad sentado en su mesa, agobiado, rodeado de pilas de exámenes en papel, post-its y una pizarra llena de tareas, luz fría y gris, cámara cerrada sobre su rostro cansado, ambiente caótico. Transición rápida tipo "flash" o disolución de luz cálida (4-5s). Escena 2 (5-10s): el mismo profesor, ahora relajado y sonriente, frente a un portátil abierto con una interfaz de IA limpia y minimalista, luz cálida y dorada, aula ordenada de fondo, gesto de alivio, plano final se mantiene estable unos segundos para dejar espacio a texto/logo en post-producción. Cámara estable, tono profesional pero cercano.
photography, dynamic shooting, distance range, Egyptian man ,buzz cut , upper-body, staring into the camera, enjoyable and smile, Used camera is Sony a9 ll with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, Egyptian army clothing, The nameplate on the uniform reads "Soldier / Ahmed Farag El Mahlawy", autumnal beach, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw -- personalize c84qxg1 --stylize 500--v 1 6.
photography, dynamic shooting, distance range, woman, 40 years old, upper-body, staring into the camera, enjoyable and smile, Used camera is Sony α9 II with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, autumnal park, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw --personalize c84qxg1 --stylize 500 --v 6. 1
photograph, front view, donald trump, standing on solid grey background, gaze into the camera, wrinkles on the forehead, by Richard Avedon style, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, wearing black suit with with white shirt and red tie, showing thumbs up realistic photography, high contrast --ar 9:16 --style raw
"Cena de filme bíblico épico: um guerreiro ferido, vestindo uma armadura marcada por batalhas, avança por um deserto de areia movediça sob um céu carregado de trovões. Cada passo afunda (tribulação), mas em seu rastro, florescem cristais translúcidos que formam um caminho sólido (perseverança). À frente, uma escadaria íngreme de pedra lascada leva a um templo em ruínas, onde suas mãos cicatrizadas reconstroem lentamente os pilares (experiência). No topo, uma mulher idosa vestida como profetisa segura um pergaminho aberto com Romanos 5:3-5 escrito em hebraico antigo, enquanto um sol dourado rompe as nuvens, iluminando um vale verdejante repleto de fontes e crianças brincando (esperança). Ao fundo, uma pomba branca mergulha das alturas, deixando um rastro de luz que envolve o guerreiro. Estilo cinematográfico inspirado em 'Gladiador' e 'Ben-Hur', com iluminação Rembrandt, texturas hiper-realistas de metal enferrujado e pele suada, e simbolismos como correntes quebradas se transformando em grinaldas de flores."
photography, dynamic shooting, distance range, Egyptian man, , age 25 ,upper-body,setting is an open, minimalistic space with soft, neutral color scheme that accentuates the motion blur, sharply in focus, contrasting with the transient figures around him, highlighting the theme of stillness amidst chaos. street mood to keep the attention on the motion effect background,staring into the camera, enjoyable and smile, Used camera is Sony a9 ll with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, surrounded by a blurred motion of multiple people walking past him, movement, wearing black color loose fit hoodie and khaki jogger pants with red color Vans high- top sneakers, sub models is monochromatic red silhouette,, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw -- personalize c84qxg1 --stylize 500--v 1 6.
photograph, long range shot, fashion model, male, seated on a chair, hairstyle is silver undercut, wearing black horn-rimmed glasses, some shaven face, his attire consists of a black loose-fit rolled up sleeves with arm medium gothic design cross tattoo and lettering tattoo, dyed black denim pants, by Richard Avedon, Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, capture the model’s confident, solid grey background photo studio, gaze into the camera, model is expressed in realistic photo, high contrast, highlighted lighting effects --ar 9:16 --style raw --s 700 --v 6
Generate a fashion editorial, high resolution photography, close detail shot, professional fashion model, thick zip up clothes to the end, covered nose and mouth, her beautiful eyes look at the camera provocatively, mixture of minimal fabric and metal materials of techwear, Sony α9 II, FE 100-400mm f/4. 5-5. 6 GM OSS lens, the backdrop is a solid black background, providing a neutral and non-distracting background that accentuates the model's features, realism lights
import bpy # Очистка сцены bpy.ops.object.select_all(action='SELECT') bpy.ops.object.delete(use_global=False) # Добавление плоскости для флага bpy.ops.mesh.primitive_plane_add(size=2, location=(0, 0, 0)) flag = bpy.context.object flag.name = "Korean Flag" # Применение текстуры флага Южной Кореи material = bpy.data.materials.new(name="FlagMaterial") material.use_nodes = True nodes = material.node_tree.nodes links = material.node_tree.links # Удаляем стандартный узел BSDF for node in nodes: nodes.remove(node) # Добавляем узел Image Texture image_texture = nodes.new(type='ShaderNodeTexImage') image_texture.image = bpy.data.images.load("//south_korea_flag.png") # Укажите путь к изображению флага image_texture.location = (-300, 300) # Узел Principled BSDF bsdf = nodes.new(type='ShaderNodeBsdfPrincipled') bsdf.location = (0, 300) # Узел Output output = nodes.new(type='ShaderNodeOutputMaterial') output.location = (300, 300) # Соединяем узлы links.new(image_texture.outputs['Color'], bsdf.inputs['Base Color']) links.new(bsdf.outputs['BSDF'], output.inputs['Surface']) # Присваиваем материал объекту flag.data.materials.append(material) # Добавление текста "Привет, Южная Корея!" bpy.ops.object.text_add(location=(0, -2, 0)) text = bpy.context.object text.data.body = "Hello, South Korea!" text.data.size = 0.5 text.data.extrude = 0.1 # Настройка камеры bpy.ops.object.camera_add(location=(0, -6, 2)) camera = bpy.context.object camera.rotation_euler = (1.2, 0, 0) bpy.context.scene.camera = camera # Настройка света bpy.ops.object.light_add(type='SUN', location=(5, -5, 5)) light = bpy.context.object # Рендеринг сцены bpy.context.scene.render.engine = 'CYCLES' bpy.context.scene.render.filepath = "//hello_south_korea.png" bpy.ops.render.render(write_still=True)
Generate this image: product editorial for fashion magazine. High resolution photograph. Shot by a professional photographer. A photorealistic image of exclusive facial cream jar with a sleek, silver cap, placed against a dark-to-light brown gradient background. The image must suggests luxury. The spot light is casting some shadows like natural sunlight. Minimalist aesthetic, subtle branding, showcases style and design innovation. Main studio Light set is a tall Softbox is lighting from the left. Style: realistic, product shot. Sony α9 II, FE 100-400mm f/4. 5-5. 6 GM OSS lens
photograph, long range shot, fashion model, male, seated on a chair, hairstyle is silver undercut, wearing black horn-rimmed glasses, some shaven face, his attire consists of a black loose-fit rolled up sleeves with arm medium gothic design cross tattoo and lettering tattoo, dyed black denim pants, by Richard Avedon, Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, capture the model’s confident, solid grey background photo studio, gaze into the camera, model is expressed in realistic photo, high contrast, highlighted lighting effects --ar 9:16 --style raw --s 700 --v 6
photograph, long range shot, fashion model, male, seated on a chair, hairstyle is silver undercut, wearing black horn-rimmed glasses, some shaven face, his attire consists of a black loose-fit rolled up sleeves with arm medium gothic design cross tattoo and lettering tattoo, dyed black denim pants, by Richard Avedon, Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, capture the model’s confident, solid grey background photo studio, gaze into the camera, model is expressed in realistic photo, high contrast, highlighted lighting effects --ar 9:16 --style raw --s 700 --v 6
focused man model, high resolution photograph, used camera Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, emulating a high-contrast, positioned straight on for a candid shot, natural sunlighting through a large window, wearing red polo t-shirt, looking left side, orange juice at the dinner table, high detailing, realistic, UHD --ar 9:16 --style raw --stylize 300
Vídeo publicitario de 10 segundos, estilo cinematográfico. Escena 1 (0-4s): un profesor de mediana edad sentado en su mesa, agobiado, rodeado de pilas de exámenes en papel, post-its y una pizarra llena de tareas, luz fría y gris, cámara cerrada sobre su rostro cansado, ambiente caótico. Transición rápida tipo "flash" o disolución de luz cálida (4-5s). Escena 2 (5-10s): el mismo profesor, ahora relajado y sonriente, frente a un portátil abierto con una interfaz de IA limpia y minimalista, luz cálida y dorada, aula ordenada de fondo, gesto de alivio, plano final se mantiene estable unos segundos para dejar espacio a texto/logo en post-producción. Cámara estable, tono profesional pero cercano.
photography, dynamic shooting, distance range, Egyptian man, , age 25 ,upper-body,setting is an open, minimalistic space with soft, neutral color scheme that accentuates the motion blur, sharply in focus, contrasting with the transient figures around him, highlighting the theme of stillness amidst chaos. street mood to keep the attention on the motion effect background,staring into the camera, enjoyable and smile, Used camera is Sony a9 ll with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, surrounded by a blurred motion of multiple people walking past him, movement, wearing black color loose fit hoodie and khaki jogger pants with red color Vans high- top sneakers, sub models is monochromatic red silhouette,, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw -- personalize c84qxg1 --stylize 500--v 1 6.
photograph, front view, donald trump, standing on solid grey background, gaze into the camera, wrinkles on the forehead, by Richard Avedon style, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, wearing black suit with with white shirt and red tie, showing thumbs up realistic photography, high contrast --ar 9:16 --style raw
"Cena de filme bíblico épico: um guerreiro ferido, vestindo uma armadura marcada por batalhas, avança por um deserto de areia movediça sob um céu carregado de trovões. Cada passo afunda (tribulação), mas em seu rastro, florescem cristais translúcidos que formam um caminho sólido (perseverança). À frente, uma escadaria íngreme de pedra lascada leva a um templo em ruínas, onde suas mãos cicatrizadas reconstroem lentamente os pilares (experiência). No topo, uma mulher idosa vestida como profetisa segura um pergaminho aberto com Romanos 5:3-5 escrito em hebraico antigo, enquanto um sol dourado rompe as nuvens, iluminando um vale verdejante repleto de fontes e crianças brincando (esperança). Ao fundo, uma pomba branca mergulha das alturas, deixando um rastro de luz que envolve o guerreiro. Estilo cinematográfico inspirado em 'Gladiador' e 'Ben-Hur', com iluminação Rembrandt, texturas hiper-realistas de metal enferrujado e pele suada, e simbolismos como correntes quebradas se transformando em grinaldas de flores."
photography, dynamic shooting, distance range, woman, 40 years old, upper-body, staring into the camera, enjoyable and smile, Used camera is Sony α9 II with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, autumnal park, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw --personalize c84qxg1 --stylize 500 --v 6. 1
"Cena de filme bíblico épico: um guerreiro ferido "PAULO", vestindo uma armadura marcada por batalhas, avança por um deserto de areia movediça sob um céu carregado de trovões. Cada passo afunda (tribulação), mas em seu rastro, florescem cristais translúcidos que formam um caminho sólido (perseverança). À frente, uma escadaria íngreme de pedra lascada leva a um templo em ruínas, onde suas mãos cicatrizadas reconstroem lentamente os pilares (experiência). No topo, uma mulher idosa vestida como profetisa segura um pergaminho aberto com Romanos 5:3-5 escrito em hebraico antigo, enquanto um sol dourado rompe as nuvens, iluminando um vale verdejante repleto de fontes e crianças brincando (esperança). Ao fundo, uma pomba branca mergulha das alturas, deixando um rastro de luz que envolve o guerreiro. Estilo cinematográfico inspirado em 'Gladiador' e 'Ben-Hur', com iluminação Rembrandt, texturas hiper-realistas de metal enferrujado e pele suada, e simbolismos como correntes quebradas se transformando em grinaldas de flores."
Generate a fashion editorial, high resolution photography, close detail shot, professional fashion model, thick zip up clothes to the end, covered nose and mouth, her beautiful eyes look at the camera provocatively, mixture of minimal fabric and metal materials of techwear, Sony α9 II, FE 100-400mm f/4. 5-5. 6 GM OSS lens, the backdrop is a solid black background, providing a neutral and non-distracting background that accentuates the model's features, realism lights
photography, dynamic shooting, distance range, woman, 40 years old, upper-body, staring into the camera, enjoyable and smile, Used camera is Sony α9 II with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, loose grey hoodie, dark grey cargo jogger pants, autumnal park, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw --personalize c84qxg1 --stylize 500 --v 6. 1
photograph, front view, donald trump, standing on solid grey background, gaze into the camera, wrinkles on the forehead, by Richard Avedon style, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, wearing black suit with with white shirt and red tie, showing thumbs up realistic photography, high contrast --ar 9:16 --style raw
photography, dynamic shooting, distance range, Egyptian man ,buzz cut , upper-body, staring into the camera, enjoyable and smile, Used camera is Sony a9 ll with Sony FE 200mm f/4. 5-5. 6 GM OSS lens, clear picture, Egyptian army clothing, The nameplate on the uniform reads "Soldier / Ahmed Farag El Mahlawy", autumnal beach, photorealism, ultra realistic, 32K, rich details, dramatic sunlight with shadow --ar 9:16 --style raw -- personalize c84qxg1 --stylize 500--v 1 6.
photography, low shot, female skateboarder is captured mid-flight above a skatepark ramp, cap backward and flowing curly hair that defies gravity, fitted white long sleeves and dark green cargo jogger pants, skateboarder's feet are snug in pristine skate shoes, and their board is a canvas of adventure with colorful stickers and the tale-telling scuffs of a well-used deck, wheels show signs of a life ridden hard, bright blue sky, the sun casting a radiant outline around the airborne figure, used camera is Sony α9 II with Sony FE 100-400mm f/4. 5-5. 6 GM OSS lens, realism light and shadows --ar 9:16 --s 500
Specialized Bitumen Refining Plant Governorate: Anbar / Hit District Production Capacity: ( ) Tons/Day The city of Hit in the Anbar Governorate is considered one of the most famous areas in the world for its natural "bitumen springs," which have been used for thousands of years (dating back to the Babylonian and Assyrian eras). However, processing this bitumen for modern use requires technical steps to transform it from a raw material into a viable product for construction or industrial applications. Bitumen emerges from these springs as a highly viscous liquid mixed with sulfurous water, salts, and mud impurities. This "Natural Asphalt" differs from petroleum bitumen produced in refineries, and it can also appear in the form of rocky or spongy blocks mixed with mud. To obtain industrially usable products from this bitumen, specifically for: 1. Waterproofing (Felt/Membranes): Considered one of the best coating materials for building foundations to prevent moisture leakage due to its high resistance to hydrolysis. 2. Road Paving: Mixed with gravel and sand to produce asphalt concrete. It is characterized by exceptionally high cohesive strength compared to industrial bitumen. The natural bitumen from these springs must undergo several fundamental processing stages to become industrially viable: 1. Collection and Sedimentation: Bitumen is collected from the springs or quarry sites and left in designated basins to allow the sulfurous water to naturally separate (due to density differences). 2. Primary Heating: The raw bitumen is placed in large boilers to: a. Evaporate the remaining water. b. Reduce viscosity for easier handling. 3. Filtration and Purification: The heated bitumen is screened to remove solid impurities such as gravel, dirt, and suspended organic matter. 4. Secondary Heating and Cooking: The temperature of the bitumen is raised, improving agents are added, and it is prepared for the vacuum distillation process. 5. Vacuum Distillation: The distillation process is conducted under low pressure (vacuum pressure), which allows for: a. The separation of light oils and volatile substances at lower temperatures. b. The production of highly pure "Hard Asphalt," which is highly demanded in the construction industry. ________________________________________ Plant Components and Operational Stages The specialized bitumen plant for processing raw natural bitumen (in both liquid and solid states) consists of a range of specialized equipment designed according to the latest international standards. This equipment aligns with the technical and engineering requirements for bitumen products, complies with Iraqi standard specifications, and adheres to environmental considerations in the Anbar Governorate. 1. Extraction Stage The raw material (solid or liquid) is extracted from quarries designated by the Geological Survey Authority using specialized mechanical equipment. It is stored in stocks or special basins for solid materials, then transported to the refinery site using specialized transport vehicles of various capacities. 2. Storage Stage The raw materials are stored in designated yards to ensure a sufficient inventory for continuous, uninterrupted production for no less than 7 working days. 3. Raw Material Preparation and Primary Heating Stage Raw materials are fed into the plant via hydraulic lifts. This stage includes: • 3-1: Crushing and Digestion: Solid raw materials from the quarries are broken down and digested using a digester (SH-01) equipped with double blades driven by hydraulic motors (22.5 kW capacity). The digester is 5 meters long and 1.80 meters in diameter, made of carbon steel, with Stainless Steel 304 blades. It includes a Stainless Steel piston driven by a 7.5 kW electric motor. • 3-2: Primary Heating: This melts the bitumen and improves pumpability through pipes and pumps. • 3-3: Efficiency Enhancement: To increase melting efficiency, Gas Oil is added to the primary heating basin at a ratio of 1:5 per ton of solid raw material entering the basin (this ratio decreases when using liquid raw bitumen). o 3-2-1: Primary Melting Basin (TK-01): Raw material is heated in a concrete tank (25m L x 5m W x 3m H) with a maximum storage capacity of 300 tons. Heating pipes circulate thermal fluid (oil) at 125°C, with a retention time of 4-6 hours. The tank is internally lined with 6-8 mm carbon steel plates to protect the heating pipes from corrosion. It contains 8 Stainless Steel 304 mixers (MX-01 A/B/C/D/E/F) driven by 7.5 kW electric motors (50 RPM) and gearboxes (1:60 ratio) to mix the material, increase heating efficiency, reduce retention time, and circulate the melted bitumen to eliminate dissolved water, resulting in a homogeneous melt. Covered with a carbon steel roof with service hatches, it connects to an air duct (30x60 cm) linked to 2 air blowers (AB-01A/B) (one operating, one standby) at 22.5 kW / 1500 RPM. These extract water vapor and sulfur fumes, sending them to a scrubber before atmospheric release and water recycling. o 3-2-2: Primary Collection Tank (V-01): A carbon steel tank (12-14 mm thick) with a maximum capacity of 125 tons (10m L x 5m W x 3m H). It connects directly to the primary tank (TK-01) via channels and movable gates to receive only liquid raw material. It contains thermal oil pipes to maintain the liquid raw material at 140°C. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum outer cover. Impurities larger than 35 mm are removed and collected in a waste tank. o 3-2-3: Screw Conveyors (SC-01 A/B): Carbon steel screw conveyors with a double-jacketed outer cover filled with thermal oil to maintain the 140°C temperature. Driven by 22.5 kW electric motors (3000 RPM) with 1:40 gearboxes, they transport the liquid raw material to the preliminary filtration unit. 4. Purification Unit Removes suspended impurities from the liquid raw material in two stages: • 4-1: Preliminary Purification Tank (V-02): A carbon steel tank (12-14 mm thick, 125-ton capacity, 5m L x 10m W x 3m H). Receives liquid raw material from the primary collection tank. Contains thermal oil pipes to maintain 140°C. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum cover. Impurities larger than 15 mm are removed to a waste tank. Material is pumped to the final filtration stage via gear pumps (GP-01 A/B) (one operating, one standby) at 22.5 kW / 1000 RPM. • 4-2: Final Filtration Unit (FT-01): Removes remaining impurities by passing liquids through box filters arranged in 2 trains (8 per train). They feature a two-layer Stainless Steel filter mesh (specified microns) wrapped around square boxes. Liquid enters from the outside, and pure liquid is collected from the inside via a pipe network connected to a manifold. This is driven by two vacuum pumps (VP-01A/B) connected to the raw material tanks. 5. Raw Material Tanks (V-03 A-J) Ten carbon steel tanks (2.5m diameter, 9m length, 14 mm thickness, 45-ton max capacity) equipped with thermal oil heating coils. They receive, store, and prepare the purified raw material for the subsequent cooking reaction. Insulated with glass wool (90 kg/m³) and a 1.8 mm aluminum cover. Connected by a pipe/valve network, the material is pumped via two centrifugal pumps (P-01 A/B) at 22.5 kW / 3000 RPM to the reactor unit. The tanks connect to a pipe network driven by vacuum pumps (VP-01A/B) at 22.5 kW / 1500 RPM, pushing heating gases and vapors to the gas washing tank (V-14). 6. Reactor (Cooking) Unit (V-04 A/B) Consists of three reactors (55 tons each) that prepare the raw material for vacuum distillation and extract light naphtha compounds. • 6-1: Cooking Process: o 6-1-1: Catalyst System: Consists of two tanks. One prepares the catalyst mixture (1.5m dia, 4m H, 8mm carbon steel) with a mixer (MX-03) driven by a hydromotor and 1:40 gearbox. The second stores Gas Oil added to the preparation unit (1.5m dia, 1m H, 5mm carbon steel) with a 0.5 HP centrifugal pump. o 6-1-2: Reaction Tanks (V-04/05/06A): Three carbon steel tanks (2.8m dia, 9m L, 14mm thick, 55-ton max). Each has 2 Stainless Steel mixers (MX-02 A/B/C/D/E/F) driven by a 7.5 kW motor (1500 RPM) with a 1:40 gearbox. Contains an internal heating system powered by a Gas Oil burner to raise the temperature to 180°C. Catalyst is injected via dosing pumps (DP-01A/B) to increase naphtha extraction efficiency. Material is circulated during cooking by two centrifugal pumps per reactor (P-04A/B/C/D/E/F) (one active, one standby) to reduce retention time to 3-4 hours. After cooking, material is moved to the attached tank (V-04/05/06B) for storage before distillation. Fully insulated. o 6-1-3: Cooked Material Tank (V-04/05/06B): Carbon steel tank (2.8m dia, 9m L, 14mm thick) with thermal oil pipes to maintain 190-200°C. Fully insulated. Material is pumped to the vacuum distillation tower via centrifugal pumps (P-05A/B) (one active, one standby) at 22.5 kW / 3000 RPM. 7. Raw Naphtha Storage Unit Collects and condenses naphtha extracted during cooking. • 7-1-1: Raw Naphtha Tanks (V-07A/B/C): Three vertical Stainless Steel 304 tanks (1.5m dia, 5m H) connected to three heat exchangers and two pump pairs. Equipped internally with water spray nozzles on a ring pipe to wash non-condensable gases. • 7-1-2: Heat Exchangers (HE-01A/B/C): Condense naphtha vapors from 140°C down to 40°C using water from the cooling tower. Connected in series. Shell & Tube type, carbon steel (510 mm dia, 6m L) with 70 tubes (0.75-inch dia) in two rows of 35. Includes internal baffles for efficiency. • 7-1-3: Supporting Pumps: Vacuum pumps (VP-01A/B) at 22.5 kW / 1500 RPM draw naphtha vapors from reactors to the heat exchangers, pushing non-condensable gases to the scrubber (V-14). Centrifugal pumps (P-02A/B) at 11.5 kW / 1500 RPM transport liquid raw naphtha to the Bleaching Unit. 8. Vacuum Distillation Unit The core of the plant, separating remaining light compounds and producing hard asphalt. • 8-1-1: Vacuum Distillation Tower: A vertical tower (~16m total height, 14mm carbon steel). Bottom section (Reboiler) is 3.5m dia x 1.2m H; top section is 1.5m dia x 12m H. Fully insulated. Fed with cooked material at 190-200°C via pumps (P-05A/B). To start extraction (remaining naphtha, Gas Oil, diesel), temperature is raised to 240-250°C using Heating Coil 1 via pumps (P-08A/B) at 55 kW / 3000 RPM, with continuous circulation via pumps (P-07A/B). Vacuum pumps (VP-03A/B) maintain 0.3-0.5 mbar pressure. Light compounds are extracted, condensed (HE-02A/B/C), and stored (V-08/09/10 A/B) over 2.5-3 hours. Afterward, material is heated via Heating Coil 2 to 320-340°C to finalize extraction and produce hard bitumen. Product is extracted via pumps (P-07A/B) at ~320°C, cooled via cooling tower coils, and sent to final tanks (V-18A/B/C). Batch processing takes 6-7 hours daily; continuous operation is possible. • 8-1-2: Supporting Pumps: Vacuum pumps (VP-03A/B) at 5.5 kW / 3000 RPM draw light vapors for condensation. Circulation centrifugal pumps (P-08A/B) at 55 kW move hot material to heating coils; (P-07A/B) circulate material and pump final bitumen product. • 8-1-3: Heating Coils 1 & 2: Carbon steel 4-inch diameter coils heated externally by a Gas Oil burner. Connected in series to heat liquid bitumen in two stages to prevent degradation. • 8-2: Heat Exchangers (HE-02A/B/C): Condense light compound vapors from 240°C to 40°C. Shell & Tube type, carbon steel (600 mm dia, 6m L) with 80 tubes (1-inch dia) in two rows of 40, equipped with baffles. • 8-3: Light Compound Tanks (V-08A/B, V-09A/B, V-10A/B): Six horizontal carbon steel tanks (1.5m dia, 4.5m L, 14mm thick). Receive condensates, linked to heat exchangers and vacuum pumps. Liquids are pumped to the Bleaching Unit via centrifugal pumps (P-06A/B) at 7.5 kW / 1500 RPM. 9. Bleaching Unit Improves the specifications of raw light compounds for local use and marketing. • 9-1: Collection Tank (V-11): Horizontal carbon steel tank (1m dia, 2.5m L, 14mm thick) placed above the system to store and distribute light compounds to the bleaching columns. • 9-2: Bleaching Columns (V-12A/B/C): Three vertical carbon steel vessels (1m dia, 4.5m H, 14mm thick). Contain a 15 cm catalyst layer on trays to bleach raw liquids into high-quality compounds, collected in a bottom horizontal tank. The catalyst is a calcined mixture of Bentonite and Zinc Oxide granules (2-3 mm) homogenized in water, which can be reactivated with steam and 5% HCl. • 9-3: Supporting Pumps: Vacuum pumps (VP-04A/B) at 5.5 kW extract vapors to the scrubber. Centrifugal pumps (P-09A/B) at 7.5 kW push bleached liquids to final tanks. 10. Production Tanks (V-13 A-F & V-18 A-C) • Light Products: Six horizontal carbon steel tanks (2.8m dia, 9m L, 55-ton capacity). V-13A/B for light naphtha, V-13C/D for Gas Oil, V-13E/F for diesel. • Asphalt: Three vertical carbon steel tanks (V-18A/B/C) (5m dia, 9m H). Equipped with thermal oil heating coils to keep asphalt liquid. Fully insulated (90 kg/m³ glass wool, 1.8mm aluminum cover). 11. Supporting Systems • 11-1: Gas Washing (Scrubber) System: Treats non-condensable gases before atmospheric release. Contains V-14 washing tank (1m dia, 2.8m L), a 500mm Flare stack with 3 ignitors, and a 1m x 1m LPG tank (V-15) for ignition. • 11-2: Cooling Tower: Provides cooling water for heat exchangers. Galvanized pressed steel basin (16m L x 2.4m W x 2.8m H), FRP casing, top fans, water distributors, and fill media. Includes Accumulator tank V-20 (1.5m dia, 2m L) and 11 kW pushing pumps (P-14A/B). • 11-3: Thermal Oil Boilers: Includes oil tank, heating boiler, oil pumps, and heating accelerators. • 11-4: Distillation Tower Raw Boilers • 11-5: Power Generation System • 11-6: Production Laboratory • 11-7: Control and Operation Room • 11-8: Catalyst System: Contains a vertical diesel tank (1m dia, 1.5m H) with a 1 kW centrifugal pump (P-11). Two vertical carbon steel tanks (V-17A/B, 1.5m dia, 4.5m H) with an MX-03 hydromotor mixer (7.5 kW, 30 RPM). V-17A is for preparation, V-17B pumps catalyst to the reactor. ________________________________________ Catalyst Chemical Components & Formulations 1. Alumina (Al2O3): Enhances the cracking of chemical bonds in heavy bitumen chains and increases Gas Oil extraction yield. 2. Manganese Dioxide (MnO2): Accelerates the reaction, reduces reaction time, and acts as a gasoline improver. 3. Silicon Dioxide (SiO2): Increases acceleration and reduces reaction time. 4. Iron Oxides (Fe2O): Accelerates the reaction, prevents pipe corrosion, and stops sulfur and wax from sticking to pipes and pumps. Weight Ratios (WT/WT) to Produce One Barrel (200 Liters) of Catalyst: 1. Alumina: Varies by feed: 2-2.5% for Bitumen / 4-5% for Vacuum Residue (VR) / 2-2.5% for Heavy Fuel Oil (HFO). To increase Gas Oil/Diesel (Light fuel) yield, Alumina can be added up to a maximum of 10%. 2. Manganese Dioxide: 2-2.5% for HFO / 4-5% for VR and Bitumen. 3. Iron Oxides: 2-2.5% across all feeds. 4. Silicon Dioxide: 2-2.5% for HFO / 4-5% for Bitumen and VR. 5. Remaining Volume: Filled with C-oil. Note: One barrel (200 Liters) of this mixture is added for every 5 tons of HFO, VR, or Bitumen. Manufacturing Mechanism: All components are placed in a tank, initially mixed with water, and heated to 80-120°C with continuous mixing (20-30 RPM). Once foam is generated, the product is allowed to cool to 80°C. The heating process up to 120°C is repeated 3 or 4 times until foaming ceases. Finally, the temperature is raised to 150°C, and the mixture is topped off to 200 liters using C-oil. To further improve light compound specifications, Zinc Oxide (300 grams) is mixed with 20 kg of Bentonite in C-oil. This is added alongside the catalyst at a ratio of 1/5 barrel of catalyst added to the reactor.