Submersible Jet Aerator For Wastewater
Submersible Jet Aerator for wastewater is usually used in aquaculture, pond mixing, municipal and industrial wastewater treatment. It features easy installation, low power consumption and high oxygen transmission rate.
Description
Overview
LK-QSB Submersible Jet Aerator for wastewater is used for oxygenation and mud-water mixing in the aeration tank, light in weight and easy to install. It delivers oxygen wherever it is needed and is easily adjustable for water depth. It achieves higher dissolved oxygen efficiency by supplying oxygen to the water. It is a product with higher efficiency and cost performance.
Features
| √ Simple maintenance, small footprint, easy installation |
| √ High oxygen transfer rate, large air intake, many and small bubbles, high dissolved oxygen |
| √ Using advanced diving technology, the impeller flow channel adopts a non-blocking flow channel, which makes the operation safer and more reliable |
| √ Excellent sealing, longer use time |
Parameter
| Model | Motor(kW) | Current(A) | Speed(rpm) | Duty area(m) | Max.Duty depth(m) | Air pipe (DN) | Air in(m3M) |
| QSB-0.75 | 0.75 | 2.9 | 2900 | 3*2 | 1.5 | 32 | 10 |
| QSB-1.5 | 1.5 | 3.7 | 2900 | 4*3.5 | 2.0 | 32 | 22 |
| QSB-2.2 | 2.2 | 5 | 2900 | 5*4 | 3.5 | 50 | 35 |
| QSB-3 | 3 | 6.4 | 2900 | 6*4.5 | 4.0 | 50 | 50 |
| QSB-4 | 4 | 8.2 | 2900 | 7*5 | 4.5 | 60 | 75 |
| QSB-5.5 | 5.5 | 12.4 | 1470 | 7.5*6.5 | 5 | 76 | 85 |
| QSB-7.5 | 7.5 | 16.5 | 1470 | 9*7 | 5.5 | 76 | 100 |
| QSB-11 | 11 | 23 | 1470 | 10*8 | 6 | 89 | 160 |
| QSB-15 | 15 | 29.7 | 1470 | 11*9 | 6 | 89 | 200 |
| QSB-18.5 | 18.5 | 36.7 | 1470 | 12*10 | 6 | 100 | 260 |
| QSB-22 | 22 | 43.2 | 1470 | 13*11 | 6 | 100 | 320 |
How It Works?
Submersible Jet Aerator for wastewater consists of submersible pump, mixing chamber, base, air inlet pipe, muffler, etc. The water pumped out by the circulation pump enters the mixing chamber through the main pipe and the inner nozzle, and after being sheared into tiny bubbles, an oxygen-enriched gas-water mixture will be formed. When the power is turned on, the impeller rotates and water flows out from the outlet of the impeller. This creates a negative pressure in the mixing chamber, allowing air to enter the mixed liquid. The mixture should flow out of the periphery, completing the process of oxygenating the liquid.

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