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Production of high purity water using membrane-free electrodeionization with improved resin layer structure

机译:使用具有改善的树脂层结构的无膜电去离子法生产高纯水

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A novel membrane-free electrodeionizatioh (MFEDI) process has been proposed and tested successfully for high purity water production in our previous work. However, to prevent the ions backward migration, the electrode polarity had to be reversed during regeneration, which complicated the regeneration process, reduced the regeneration efficiency and shortened the electrode life. In order to avoid the electrode polarity reversal and enhance the regeneration efficiency, the resin layer structure and the types of mixed resins were changed in this work to form a MFEDI without electrode polarity reversal which was then tested by desalinating the synthetic two-pass RO permeate of seawater with a total of 40 operational cycles. Results demonstrated that the backward migration of Na+ ions was prevented effectively; the weak-type resins facilitated the water dissociation and promoted the regeneration of strong-type resins significantly. Both good purification and effective regeneration were achieved. The conductivity of effluent was 0.060-0.063 mu S/cm only. The energy consumption and the water recovery were 0.24 kW h/m(3) water and 96.1%, respectively. Repetitive experimental results showed this MFEDI system could work stably. (C) 2016 Elsevier B.V. All rights reserved.
机译:在我们以前的工作中,已经提出了一种新颖的无膜电去离子(MFEDI)工艺,并已成功测试了高纯水的生产。然而,为了防止离子向后迁移,在再生期间必须使电极极性反转,这使再生过程复杂化,降低了再生效率并缩短了电极寿命。为了避免电极极性反转并提高再生效率,在这项工作中改变了树脂层的结构和混合树脂的类型,以形成没有电极极性反转的MFEDI,然后通过对合成的两遍RO渗透液进行脱盐测试总共40个操作周期的海水。结果表明,可以有效地阻止Na +离子向后迁移。弱型树脂促进了水的离解并显着促进了强型树脂的再生。获得了良好的纯化和有效的再生。流出物的电导率仅为0.060-0.063μS/ cm。能源消耗和水回收分别为0.24 kW h / m(3)水和96.1%。重复的实验结果表明该MFEDI系统可以稳定运行。 (C)2016 Elsevier B.V.保留所有权利。

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