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Issac Jose

Model: OpenArt SDXL

Prompt:

Detailed infographic of wastewater treatment process, realistic digital illustration, high qualit...Show more
Scale: 7
Steps: 25
Seed: 139550536
Width: 1024
Height: 1024
Sampler: DPM++ 2M SDE Karras

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Prompt: I want a one-minute animation video about a swimming pool complex water purifier, which I will explain in full below. I want a video of the structure of a large water purifier along with the function that I will explain. The quality and effects of this video are very important. Sand filter Removal of coarse solid particles from water Reduction of SDI turbidity Reduction of TH hardness Removal of chlorine Reduction of BOD and COD Removal of color from water CuSO4 copper sulfate To eliminate algae Destruction of single-celled microorganisms of plant origin Al2(SO4)3 alum Aluminum sulfate Due to its coagulation properties, it makes pool water clean and transparent. Edible acid Hydrochloric acid Adjusting the pH of water Preventing the growth of bacteria, fungi and algae in water Chlorination Decontamination Removing organic nitrogenous substances including ammonia Controlling the taste and smell of water Removing iron and manganese Removing water color Controlling sludge, algae and bacteria Clean and purified water enters the main adult pool, children's pool and jacuzzi from the pool entrances. Used water exits in two ways. 1-From the grills around the pool when athletes enter and exit and the overflow 2-The pool floor water outlets in the deep part After the water exits the pool, it enters the water purification system. Which includes two stages of granular sand filter, Hair remover to remove hair and solids and chlorination device . This step is performed regularly daily and every six hours, all the water in the main pool, children's pool and jacuzzi is purified. The water in the cold water pool and jacuzzi is drained after each session, the walls and floor of the pools are acid washed, and then refilled with freshly purified water.
Prompt: CARBON CYCLE IMAGE
Prompt: Carbon Capture and Storage (CCS) in industrial setting, realistic digital rendering, industrial pipes and machinery, capturing CO2 emissions, futuristic green technology, high-tech gas network, professional, detailed, industrial, realistic, highres, digital, futuristic, green technology, CO2 capture, storage, industrial pipes, machinery, greenhouse gas-neutral, complementary measure, atmospheric lighting
Prompt: generate a graphical abstract of a water distribution system
Prompt: A semi-realistic illustration of micropollutants' journey through the water cycle, divided into three connected scenes:

Agriculture (left): Fields with crops, a tractor spraying pesticides. Visible droplets seeping into the soil, contaminating groundwater (show wavy lines or faint glowing dots representing pollutants moving underground toward a river.

Urban/Industrial (center): A wastewater treatment plant discharging effluent into a river (use pipes with flowing water). Subtle glowing dots (micropollutants) remain in the discharged water. Factories or houses in the background.

Advanced Water Treatment (right): A high-tech facility with reactors (UV/ozone tanks, bubbling systems) purifying water. Show scientists checking monitors (no text on screens) and clean water exiting the plant.
Key visual cues:

A river flows continuously from left (agriculture) to right (treatment plant).

Use faint glowing dots/sparks (blue or red) to trace micropollutants in water/ground.

Style: Clean, professional, semi-realistic (like a scientific journal illustration). Avoid photorealistic or cartoonish extremes. Color palette: Natural blues/greens for water/fields, gray/white for industrial parts.
Prompt: landscape with various ecosystems
 representing aspects of higher education like standards, accreditation, teaching, evaluation