The connector of the tubular microporous aerator adopts a new type of saddle shaped card sleeve plug-in plate, which is sturdy and has better sealing performance. It has stable physical and chemical properties, long service life, uniform punching, un..
—— Professional technical team.
—— Strict inspection standards.
—— A powerful production system.
1. Product Overview:
The connector of the tubular microporous aerator adopts a new type of saddle shaped card sleeve plug-in plate, which is sturdy and has better sealing performance. It has stable physical and chemical properties, long service life, uniform punching, uniform and small pore size, small diameter of diffused bubbles, and large gas-liquid interface area. Therefore, it has high mass transfer efficiency and high oxygenation efficiency. Compared with other current aeration devices, it can greatly save electricity consumption and reduce the operating cost of sewage treatment. Due to the use of imported high-quality rubber for the diffusion film of the microporous aerator, it has excellent physical and mechanical properties. The accessories and air pipes are made of ABS engineering plastic combination, which is not afraid of corrosion and has reliable performance, greatly reducing the workload of operation and maintenance.
2. Technical parameters:
3. Structure and appearance:
The connection method between the tubular microporous aerator and the gas distribution branch pipe should be a "saddle shaped sleeve type insert plate sturdy type", and an O-ring rubber seal should be provided at the inlet nozzle.
In order to ensure that the aeration membrane has a sufficiently long service life and reduce operating resistance, it is specially required that the air holes in the lining tube of the membrane tube type microporous aerator should be evenly distributed at multiple points along the length direction of the lining tube (diagonally intersecting downwards).
The supporting lining tube of this series of aeration tubes is essentially similar to a perforated tube, because it is also inclined 45 degrees downwards with the perforated tube, and then covered with a rubber film on the outer surface. This design can prevent the membrane from reaching its limit of life and causing large bubbles to affect other pipeline aerators once it is damaged. Because after the membrane is damaged, it will aerate in the form of a perforated tube without fatal danger to the system!