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Dry room submersible solar micro-nano bubble aerator

A micro-nano bubble and submersible technology, applied in the field of aerators, can solve the problems of high construction cost and inability to move, and achieve the effect of large service area, convenient installation and maintenance, and good effect

Active Publication Date: 2017-01-11
YANGZHOU UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, micro-nano bubble aeration is to build a micro-nano bubble generating device on the shore, and aerate the water through the pipe network, which is similar to blast aeration, cannot be moved, and the construction cost is high

Method used

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  • Dry room submersible solar micro-nano bubble aerator

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Embodiment Construction

[0020] Such as figure 1 As shown, the dry room submersible solar micro-nano bubble aerator consists of a dry room buoyancy tank 1, a micro-nano bubble pump 2, a storage battery 3, a water inlet tank with a grid 4, a pressure water distribution area 5, a counterweight area 6, and an inlet Air hole 7, fixed communication pipe 8, rotary jetting device 9, annular buoy 10, solar panel 11, sealed rotary bearing 12, water suction pipe 13, air inlet pipe 14, water outlet pipe 15, one-way valve 16, micronano bubble releaser 17 , Tail end lateral spray hole 18 etc. are formed. Among them, the dry chamber floating tank 1 is divided into upper, middle and lower parts. The upper part is equipped with a micro-nano bubble pump 2 and a storage battery 3. The left side of the middle part is equipped with a micro-nano bubble pump and a water inlet tank 4 with a grid. The right side of the middle part is equipped with a micro-nano bubble pump for pressure water distribution. Zone 5, the lower p...

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PUM

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Abstract

The invention relates to an aerator, in particular to a dry room submersible solar micro-nano bubble aerator, which is a new high-efficiency aerator suitable for landscape water bodies, aquaculture and sewage treatment. The aerator mainly includes a dry chamber buoyancy tank (1), a micro-nano bubble pump (2), a rotary spray device, an annular buoy, and a solar panel. Among them, the upper part of the dry chamber buoyancy tank is equipped with a micro-nano bubble pump and a storage battery, one side of the middle part is provided with a water tank, the other side is provided with a pressure water distribution area, and the lower part is a conical counterweight area. The upper part of the dry chamber buoyancy tank has an air inlet, and the lower part is connected with the pressure water distribution area and the rotary injection device through a fixed connecting pipe. Powered by solar cells, the micro-nano bubble pump is driven to inhale air and water, and the air-water mixture enters the rotary injection device through the fixed connecting pipe and the sealed rotating bearing in turn, for 360° jet aeration.

Description

technical field [0001] The invention relates to an aerator, in particular to a dry room submersible solar micro-nano bubble aerator, which is a novel high-efficiency aerator suitable for landscape water bodies, aquaculture and sewage treatment. Background technique [0002] Aeration and oxygenation can accelerate the reoxygenation process of water body, oxidize the substances produced during anaerobic degradation of organic matter, improve the black and odor condition of water body, enhance the turbulence of water body, and slow down the release of phosphorus from sediment. At present, the aerators that are widely used in practice can be divided into three types in principle: blast aeration, mechanical aeration, and jet aeration. The principles are different, and the advantages and disadvantages are different. Among them, blast aeration is underwater aeration, with large air volume and the best oxygenation effect, but it needs to build a blower room and aeration pipe network...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C02F7/00A01K63/04
CPCA01K63/042C02F7/00C02F2103/007Y02W10/10Y02W10/37
Inventor 鄢碧鹏邵怡斌叶飞孙海虎谈家彬
Owner YANGZHOU UNIV
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