
Product Description
The tubular microporous aerator is a sophisticated and dependable solution designed to be energy-efficient, predominantly utilized in the treatment of municipal and industrial wastewater. This advanced device excels in
delivering low pressure loss while optimizing oxygen utilization efficiency. It ensures uniform bubble diffusion and boasts strong corrosion resistance, minimizing energy consumption, enhancing performance efficiency, and offering
an extended service life that promises reliability and durability.
Features:
Streamlined and efficient structure
Evenly distributed stress for optimal functionality
Performance characterized by reliability and consistency
Effortless and straightforward installation
Product Parameters
|
Product Parameters |
Relevant Technical Parameters |
Model |
φ65mm |
service area:0.8-1.2m²/m |
Bubble Diameter: |
1-2mm |
Specification |
L=500mm,L=750mm,L=1000mm |
oxygen utilization rate:≥28% |
oxygenation capacity: |
≥0.38Kg/h |
Connection Method |
hoop connection |
Oxygenation power efficiency:≥7.1Kg/KW ·h |
air flow rate: |
5-10m³/h ·m |
Material |
EPDM rubber film, silicone rubber film |
stomatal density:8000-12000 per/m |
resistance loss: |
≤3500Pa |
Model |
φ93mm |
service area:1.75-5.61m2/m |
Bubble Diameter: |
1-2mm |
Specification |
L=500mm,L=750mm,L=1000mm |
oxygen utilization rate:≥35% |
oxygenation capacity: |
≥0.58Kg/h |
Connection Method |
hoop connection |
Oxygenation power efficiency:≥8.9Kg/KW ·h |
air flow rate: |
8-15m³/h ·m |
Material |
EPDM rubber film, silicone rubber film |
stomatal density:19000-23000per/m |
resistance loss: |
≤4000Pa |






PRODUCT STRUCTURE
The rubber membrane hose is crafted from high-quality silicone and EPDM rubber, renowned for its exceptional resistance to heat, ozone, acids, and alkalis. This material offers remarkable chemical stability which
ensures heat, ozone, and chemical resistance, thus extending the longevity of the rubber membrane considerably when compared to conventional rubber options.
characteristics vastly improve its service life compared to standard rubber membranes.
01
Innovatively designed with a hollow, water-filled support body, this feature significantly diminishes the aerator's buoyancy in water, enhancing stability and performance.
The reduction of buoyancy in water provides greater stability.
02
Aeration is achieved through uniquely designed zigzag long holes, providing excellent tension and instantaneous closure. This allows for the release of micro-bubbles smaller than 2MM in diameter, achieving an impressive
oxygen utilization rate ranging from 28% to 35% for maximum efficiency.
03
Equipped with air-guide tanks, the aerator ensures rapid and uniform gas distribution within, enhancing aeration membrane tube longevity. The uniform release of gas bubbles improves aeration effectiveness while the air-guide
groove, a narrow concave design, ensures the rubber membrane tube remains optimally aligned, enhancing the uniformity of gas release. This design prevents sewage backflow when the air supply is haltered, thus
prolonging the aeration membrane's effectiveness. When not in operation, the absence of aeration holes in the membrane and its close fit to the guide groove prevents backflow.
tube areas without aeration holes adhere snugly to the guide groove, ensuring backflow prevention.
Upon cessation of air supply, the rubber membrane adheres closely to the air guide groove, safeguarding against sewage backflow, thereby ensuring uninterrupted operation.







