Fine Bubble Tube Diffuser Parameter:
|
Item
|
Φ67mm*500mm
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Φ67mm*750mm
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Φ67mm*1000mm
|
|
Oxygen transform efficiency (%)
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>30
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>30
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>30
|
|
Working air flow (m3/h)
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1-5
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1-7
|
1-12
|
|
Designed air flow(m3/h)
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3
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5
|
7
|
|
Service area (m2/piece)
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0.45-1
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0.5-1.2
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0.75-1.5
|
|
Hole number(pc)
|
8080
|
12300
|
16880
|
|
Bubble dia (mm)
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1-3
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1-3
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1-3
|
|
Drag loss (pa)
|
<3000
|
<3000
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<3000
|
|
Oxygenate capability (kgO2/h)
|
0.45
|
0.55
|
0.65
|
|
Theoretic dynamic efficency(kgO2/kw.h)
|
6.5
|
7
|
7.5
|
Product Presentation:
The gas diffusion hose of the microporous aeration pipe is made of original imported material, featuring stable physicochemical properties and long service life. The uniformly drilled holes with fine pores produce small-diameter bubbles and a large gas-liquid interface area, achieving high oxygen transfer efficiency and superior aeration performance. Compared to existing layer gas systems, this design significantly reduces energy consumption and lowers operational costs for wastewater treatment. The diffusion hose of the microporous aerator is crafted from premium imported rubber.
The product boasts excellent physical and mechanical properties. Its components and air ducts are constructed from ABS engineering plastic, ensuring rust resistance and reliable performance while significantly reducing maintenance requirements. This series features a clog-resistant design with an automatic cleaning function and anti-backflow aerator pipe. When the blower temporarily stops supplying air, the membrane contracts immediately to prevent sewage backflow into the aerator pipe. Upon resuming operation, the membrane rapidly expands to release bubbles while dislodging sludge adhering to its surface.
Connection and fastening method:
The innovative structural design features multiple connection options and a perforated air distribution system for enhanced operational stability. Stainless steel clamps ensure secure fastening and sealing across diverse applications. The patented diaphragm fastening mechanism simplifies installation while utilizing imported materials and advanced manufacturing processes to deliver stable physical-chemical properties and extended service life. The non-clogging design effectively prevents sewage backflow and sludge blockages in wastewater treatment systems. With minimal operational resistance and high oxygenation efficiency, the system achieves remarkable energy savings. The open-type aeration support structure and anti-floating bracket design reduce buoyancy-induced stress on the main unit, significantly extending its service lifespan.
Maintenance and Care:
1. Operators should regularly inspect the aeration system’s performance. If water head resistance increases or bubble morphology changes, the aerator requires cleaning of deposits such as carbonates, iron salts, aluminum salts, and biological sludge. Scale buildup on the rubber membrane can reduce gas output, decrease oxygen utilization efficiency, and increase head loss.
2. Periodic drainage cleaning is the ideal maintenance method, with intervals determined by factors like water properties and treatment processes.
3. During drainage cleaning, ensure accumulated deposits on the rubber membrane surface remain moist and unclumped, as dry deposits can hinder cleaning operations and impair aerator performance.
4. The biological sludge can be removed by physical methods, such as cleaning the surface of the rubber membrane with a brush or flushing it with a high-pressure water gun. When flushing the rubber membrane with a high-pressure water gun, pay attention to keep the nozzle of the water gun about 500mm away from the surface of the rubber membrane to prevent damage to the rubber membrane.
5. The carbonate and other scale should be removed by chemical method. A certain amount of formic acid is introduced into the aeration system with air, and the proportion of formic acid added depends on the degree of scaling. There is no need to drain the water in the aeration tank during cleaning. Generally, it is cleaned once or twice a year.
6. When the microporous aerator is damaged or it is considered that the performance requirements can not be met after cleaning and maintenance, the rubber diaphragm or the whole aerator can be replaced. The replacement method is the same as the installation method.
Company Profile:
Shenghe Environmental Protection Co., Ltd. is headquartered in Yixing City, Jiangsu Province, which is known as the “Hometown of Environmental Protection” and located on the shore of Taihu Lake. The company focuses on the field of environmental protection technology and is committed to the research and development and production of eco-friendly products. Our main products include water treatment equipment such as reverse osmosis devices, sludge dewatering machines, mechanical screens, aerators, automatic dosing systems, as well as electrical control cabinets, fillers, and activated carbon. We not only produce high-quality and stable products but also offer comprehensive after-sales services including equipment installation, commissioning, operation, and maintenance. The mission of Shenghe Environmental Protection is to serve customers and lead the environmental protection industry. Our professional production and operation maintenance team provides you with the best solutions and services.
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Our company provides high quality and stable products, including reverse osmosis system, sludge dewatering machine, mechanical grille, dosing device, electrical control cabinet, etc., our professionals will provide you with installation, commissioning, operation, and follow-up maintenance services to help you solve problems!
Yixing Shenghe Environmental Protection Co., Ltd.
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