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a membrane module

A technology of membrane modules and ultrafiltration membranes, applied in membrane technology, semi-permeable membrane separation, anion exchange, etc., can solve problems such as increased operating costs, inability to achieve continuous output of concentrated solutions, and difficulty in membrane cleaning, so as to reduce operating costs Effect

Active Publication Date: 2015-07-29
北京北控工业环境科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Seung Joo Lim et al. used a single ion exchange membrane to achieve NH in wastewater 4 + However, due to the use of a single membrane and solutions on both sides of the membrane, large-scale sewage treatment applications cannot be realized, and when the membrane is fouled, it is difficult to clean the membrane; Yasuyuki FUKUMOTO and others use tubular ion-exchange membranes to achieve NO in wastewater 3 - Separation, but separation of enriched NO 3 - solution, an external circulation pump is required to circulate and discharge the concentrated solution, which not only increases the operating cost, but also cannot achieve continuous output of NO 3 - Concentrated solution; In addition, ion exchange membranes are widely used in electrodialysis, but electrodialysis has certain limitations, that is, only specific ions are allowed to pass through the membrane, and water molecules cannot pass through

Method used

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Embodiment Construction

[0029] Attached below figure 1 , 2 , 3, 4 and embodiments are described in detail, to further understand the present invention:

[0030] Membrane module A among the present invention ( figure 1 , figure 2 ) consists of an anion exchange membrane 3 , an ultrafiltration membrane or a microfiltration membrane 2 and a support plate 1 with a diversion groove 5 and holes 6 .

[0031] Anion exchange membrane 3 among the present invention is common anion exchange membrane, and ultrafiltration membrane 2 is common ultrafiltration membrane or microfiltration membrane, and in order to make experimental effect reach better, the anion exchange membrane 3 that the present invention adopts is from Japanese astom The provided model is ACS anion exchange membrane, and the ultrafiltration membrane 2 is provided by Nanjing Ruijiete with a pore size of 0.1μm and a membrane flux of 18.75-20.83L / m 2 .h ultrafiltration membrane.

[0032] A kind of nitrate nitrogen enrichment device in water pr...

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Abstract

The invention relates to a membrane module A which can be used for dialysis, electrolysis operation and enrichment of specific cations in water, and provides the membrane module A which is easy to operate, convenient to maintain and low in energy consumption, has certain specific cation enrichment capability and allows water to seep into. The membrane module A comprises a cation exchange membrane, an ultrafiltration membrane or micro-filtration membrane and a supporting plate with a diversion trench and a hole, and is characterized in that the cation exchange membrane and the ultrafiltration membrane or the micro-filtration membrane are respectively fixed on two sides of the supporting plate.

Description

technical field [0001] The invention provides a complete membrane module A, which can be used for dialysis, electrolysis operation and specific anion enrichment in water. Background technique [0002] Ion exchange membrane has strong ion selective permeability, high separation efficiency, low energy consumption, and less pollution, so it has important application value in many fields. [0003] In recent years, ion exchange membranes have been widely used in water supply and sewage treatment industries to separate target components and enrich them for subsequent treatment. Seung Joo Lim et al. used a single ion exchange membrane to achieve NH in wastewater 4 + However, due to the use of a single membrane and solutions on both sides of the membrane, large-scale sewage treatment applications cannot be realized, and when the membrane is fouled, it is difficult to clean the membrane; Yasuyuki FUKUMOTO and others use tubular ion-exchange membranes to achieve NO in wastewater 3 ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B01D63/00B01D63/08B01J41/00C02F1/44C02F1/42
Inventor 张岩陈敬刘焕光张中朱敏甘志明孙凤侠史扬谢杭冀
Owner 北京北控工业环境科技有限公司
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