Microporous ceramic aerator

A technology of microporous ceramics and aerators, applied in water aeration, chemical instruments and methods, sustainable biological treatment, etc., can solve the problems of small aeration area, unsuitable for ponds and factory farming, etc., to increase aeration Gas area, easy assembly and application, and the effect of improving absorption rate

Inactive Publication Date: 2012-10-31
SUZHOU PENTAIR WATER TREATMENT CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] (3) The microporous ceramic aerators currently on the market are generally only suitable for the transportation of live fish due to their small aeration area, and are not suitable for ponds and factory farming

Method used

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  • Microporous ceramic aerator

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Embodiment Construction

[0023] The present invention will be described in detail below with reference to the accompanying drawings and in combination with embodiments.

[0024] see figure 1 As shown, a microporous ceramic aerator includes a base part 1, a first end part 2 and a second end part 3; the base part 1 includes a microporous ceramic sheet 101 and a base part cavity cover 102, the The microporous ceramic sheet 101 is bonded to the base cavity cover 102 to form a closed container, one end of the base cavity cover 102 is connected to the first air hole joint 103, and the other end is connected to the second air hole joint 104; the first end The part 2 and the second end part 3 respectively include a closed cavity, one end of the closed cavity is provided with an air filling port 4, and the other end is provided with an air hole interface 5; the air hole interface of the first end part 2 and the second end part 3 5 and respectively screwing and connecting the first air hole joint 103 and the s...

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Abstract

The invention discloses a microporous ceramic aerator. The microporous ceramic aerator comprises a substrate, a first end piece and a second end piece, wherein the substrate is a closed container formed in the way that a microporous ceramic chip is bonded on a substrate cavity sleeve, and two ends of the substrate cavity sleeve are respectively connected with a first pore connector and a second pore connector; the first end piece, as well as the second end piece, comprises a closed cavity, an inflation port is formed at one end of each closed cavity, and a pore interface is formed at the other end; the pore interfaces of both the first and the second end pieces are respectively connected with the first pore connector and the second pore connector in a screwing manner, and a first wedge and a second wedge clamping groove are respectively formed at two ends of the substrate cavity sleeve, a first wedge clamping groove and a second wedge are arranged at the ends of the closed cavities, which are connected with the pore interfaces; and the first wedge can be wedged into the first wedge clamping groove and the second wedge can be wedged into the second wedge clamping groove. The microporous ceramic aerator can considerably improve the oxygen absorptivity of water and enable the dissolved oxygen content to reach 80 percent to the maximum extent, and can be used for factory high-density cultivation and live fish transportation.

Description

technical field [0001] The invention relates to a fishery aeration device, in particular to an aeration device, in particular to a microporous ceramic aerator for pure oxygen aeration. Background technique [0002] The development of intensive high-density farming technology and high-density transportation of aquatic products will play an important role in the future aquaculture industry. The key to the development of high-density breeding technology and high-density transportation of aquatic products is to increase the dissolved oxygen content in water. Aeration refers to the process of forcibly transferring the oxygen in the air to the liquid, the purpose of which is to obtain sufficient dissolved oxygen. [0003] At present, there are two main methods to increase the dissolved oxygen content in water: one is to increase the oxygen production capacity, and the other is to reduce the oxygen consumption factor. The specific implementation method is: air oxygenation and pur...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01K63/04C02F7/00
CPCY02W10/10
Inventor 周孟强布莱恩·赫希托马斯·罗德
Owner SUZHOU PENTAIR WATER TREATMENT CO LTD
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