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Submerged aerator with gas cylinder direct air-intake

An air guide, submersible technology, applied in water aeration, sustainable biological treatment, water/sludge/sewage treatment, etc. It can achieve the effect of enhanced stirring and push flow effect, significant energy saving effect and high pressure difference.

Active Publication Date: 2011-01-26
孙树林 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0009] Then, because there are many connecting points between the ventilation pipe 4, the sealing rotary joint 6, the flange 7 and the upper shaft extension 14 of the motor, they are easily damaged in practical applications.
[0010] Finally, because the jet impeller 11 just throws the air sent into the water by the centrifugal fan 1 into the water body, the mixing effect of water and air is not good, and it is impossible to form atomized tiny bubbles

Method used

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Embodiment Construction

[0029] As shown in Figure 1, the submersible aerator of the present invention with direct air intake from the air guide tube is installed vertically with the diving hollow shaft motor, the fan base 2 is fixed on the upper end of the air guide tube 35, and the fan base 2 is provided with an air inlet 3, The gas ring compressor 29 is fixed on the fan base 2 through a bracket 34 , and the exhaust port 30 of the fan is connected to the air inlet 3 through a stainless steel pipe (or hose) 33 in a sealed manner. The lower end of the air guide cylinder 35 is fixed together with the first motor flange 19 of the diving hollow shaft motor 9 through the first flange 36; the second motor flange 20 and the shroud 38 are fixed together through the second flange 37, and the diving The lower shaft extension 18 of the hollow shaft motor 9 is coaxially connected with the propeller assembly composed of the propeller 39, the jet mixer 40 and the air fragment 41, and rotates synchronously with the ...

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PUM

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Abstract

The invention discloses a submersible floating aerator with direct air intake from an air cylinder. The aerator mainly comprises a fan holder (2), an air inlet (3), a submersible hollow-axis motor (9). A gas ring compressor (29) is fixed on the fan holder (2) through a support (34). The fan holder (2) is welded and fixed on an upper end of an air cylinder (35). An air outlet (30) and the air inlet (3) of the gas ring compressor (29) are sealed and connected through a stainless steel pipe or a hose (33). A lower end of the air cylinder (35) is fixed with a first motor flange (19) through a first flange (36). A second motor flange (20) is fixed with an air guide sleeve (38) through a second flange (37). A lower shaft extension (18) of the submersible hollow-axis motor is coaxially connectedwith a propeller assembly consisting of a propeller (39), a jet mixer (40) and vapor crushing slices (41). With the technical proposal, the aerator can carry out deepwater aeration.

Description

technical field [0001] The invention relates to a submersible aerator which is suitable for aerating and increasing oxygen in a deep water area in a sewage purification biological treatment method to increase dissolved oxygen content and dissolved oxygen saturation in sewage, and is directly fed by an air guide cylinder. Background technique [0002] There are a large number of microorganisms in nature, which have the ability to oxidize and decompose complex organic and certain inorganic substances, and convert these substances into simple substances, or convert toxic substances into non-toxic substances. Practice has shown that the use of microorganisms to treat organic matter in wastewater has the advantages of low investment, high efficiency, stable operation, low operating costs, good effluent quality, good sludge settling performance, and can be used as fertilizers. Among the biological treatment methods, the activated sludge method occupies an extremely important posit...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C02F7/00
CPCY02W10/10
Inventor 孙建
Owner 孙树林
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