
Product Description
Discover the tubular microporous aerator-a pinnacle of innovation in wastewater management. This device boasts a mature, reliable, and energy-efficient design that's indispensable for both municipal and industrial wastewater treatment.
Engineered for excellence, it promises a minimal pressure loss while delivering exceptional oxygen utilization efficiency. Its design ensures that bubble diffusion is impeccably uniform,
and it stands strong against corrosion. With low energy consumption and high operational efficiency, this solution promises a prolonged service life, making it a stellar choice.
Features:
Simple structure
Uniform stress distribution
Reliable Performance
Effortless 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
Crafted from premium silicone and EPDM rubber, the rubber membrane hose exhibits remarkable heat and ozone resistance. It offers resilience against acid and alkali, alongside robust chemical stability.
These impressive attributes ensure that compared to conventional rubber membranes, this advanced design significantly enhances service longevity.
Witness a marked improvement in durability and performance over ordinary rubber materials.
01
Ingeniously designed with a hollow, water-filled support body, this feature dramatically reduces the aerator's buoyancy when submerged, ensuring optimal functionality.
The innovative design ensures the aerator's buoyancy is significantly diminished, optimizing its effectiveness.
02
Aeration holes are crafted in a unique zigzag long-hole pattern, providing robust tension and instantaneous closure. This allows the precise release of micro-bubbles with diameters less than 2MM.
Such precision ensures a superior oxygen utilization rate, ranging impressively between 28% to 35%.
03
The incorporation of air-guide tanks ensures swift and even gas distribution within the aerator, enhancing the uniformity and longevity of the aeration membrane tube.
This design elevates the gas release uniformity, boosting the aeration effect. The air guide channel, a narrow concave groove, aligns perfectly with the rubber membrane tube.
Strategically, no aeration holes are placed in the membrane tube area aligning with the groove. Upon cessation of gas supply, the rubber membrane adheres closely to the guide groove.
This strategic design prevents any backflow of sewage by ensuring the membrane remains tightly sealed to the guide groove when air supply halts.
When the gas supply is discontinued, the membrane's tight adherence to the air guide groove effectively hinders sewage backflow, safeguarding system integrity.







