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Production of high-purity water by continuous electrodeionization with bipolar membranes:Influence of concentrate and protection compartment

机译:通过双极膜连续电去离子化生产高纯水:浓缩液和保护室的影响

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摘要

Main advantages of continuous electrodeionization with separated beds of cation- and anion-exchange resins and bipolar membranes are compared with other established electrodeionization concepts.Co-ion leakage from the concentrate into the diluate through ion-exchange membranes of limited permselectivity has been identified as the main reason for increased diluate conductivity.Diluate conductivity can be strongly reduced by either a "protection compartment" between the diluate and the concentrate compartment or by a concentrate compartment filled with an ion-exchange resin.In both cases a part of the diluate produced should be used as rinse for the protection or concentrate compartment.Experimental results with two electrodeionization modules comprising either separated beds with protection compartment or concentrate compartment filled with ion-exchange resin are presented and discussed.The influence of the flow rate through the protection compartment,the flow directions in different compartments,the feed water conductivity,the current density as well as the current density distribution on the process performance is investigated.
机译:将阳离子和阴离子交换树脂和双极性膜分离床进行连续电去离子化的主要优点与其他已建立的电去离子概念进行了比较.co-离子从精矿中通过选择性渗透性有限的离子交换膜泄漏到稀释液中被认为是稀释液电导率增加的主要原因。通过稀释液和浓缩液室之间的“保护室”或填充有离子交换树脂的浓缩液室可以大大降低稀释液电导率。在两种情况下,都应将一部分稀释液产生提出并讨论了两个电去离子模块的实验结果,该模块包括带保护室的分离床或填充有离子交换树脂的浓缩室。两个电去离子模块的实验结果。通过保护室的流速的影响不同公司的流向考察了给水电导率,电流密度以及电流密度分布对工艺性能的影响。

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