
Product Description
Introducing the tubular microporous aerator, a hallmark of maturity, reliability, and energy efficiency. This sophisticated aeration device is primarily utilized in the treatment of municipal and industrial wastewater.
It boasts an impressive array of features, including minimal pressure loss, exceptional oxygen utilization efficiency, and a seamless diffusion of bubbles.
With robust corrosion resistance, it ensures low energy consumption, superior efficiency, and an extended service lifespan.
Features:
Elegant and Simple Structure
Uniform Stress Distribution
Consistent and Reliable Performance
Effortless Installation Process
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 silicone and EPDM rubber, the rubber membrane hose exemplifies exceptional heat and ozone resistance. It stands resilient against acids, alkalis, and showcases remarkable chemical stability.
Compared to traditional rubber membranes, it significantly enhances the service life, offering unparalleled durability and performance.
This innovative design ensures longevity and reliability beyond conventional materials.
01
The support body features a hollow, water-filled design, drastically mitigating the aerator's buoyancy underwater, ensuring stability and operational efficiency.
This ingenious design notably reduces buoyancy, optimizing underwater performance.
02
Ingeniously designed aeration holes, crafted in a zigzag pattern, provide excellent tension and instantaneous sealing. Capable of releasing micro-bubbles with diameters under 2MM, it ensures high oxygen utilization rates, ranging from 28% to 35%.
These precise specifications enhance oxygen transfer efficiency, elevating aeration performance to new heights.
03
Incorporation of air-guide tanks allows for rapid, uniform gas distribution within the aerator. This design ensures uniformity in the force exerted on the aeration membrane tube, prolonging its life and optimizing gas release uniformity.
The air guide groove, a narrow concave channel, supports the rubber membrane tube without aeration holes, preventing sewage backflow when air supply ceases.
By stopping the gas supply, the rubber membrane adheres closely to the guide groove, ensuring a flawless barrier against reverse flow.
This protective feature ceaselessly guards against potential backflow, securing system integrity.
When the air supply is halted, the membrane tightly seals the air-guide groove, forestalling any backflow of sewage, ensuring operational safety and longevity.







