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Return flow ion concentration polarization desalination: A new way to enhance electromembrane desalination

机译:返回流动离子浓度极化脱水:一种增强电磁脱盐的新方法

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摘要

In electromembrane desalination processes such as electrodialysis (ED) and ion concentration polarization (ICP) desalination, ion-depleted boundary layers constitute the desalted, product stream, yet also cause high resistivity and voltage drop. Directly manipulating fluid flow streams is a new method to break this fundamental trade-off for electromembrane desalination. In this work, we are introducing a novel electromembrane desalination architecture that allows a feed stream to return to the feed inlet side of the membrane (hereby named as return-flow (RF) architecture) to improve the energy efficiency by re-distributing and controlling the depleted boundary layer, even at high current values. The technical feasibility of this idea was examined in ICP desalination process (RF-ICP) with a wide range of feed salinity from 10 to 70 g/L. For a partial desalination, RF-ICP (similar to 75 cm(2) of membrane area) has achieved similar power consumption compared to batch-ED with 3 times bigger membrane area (200 cm(2)) with a higher area efficiency for salt removal, which translates into lower optimal desalination cost. The techno-economic analysis of RF-ICP have been performed for the treatment of 70 g/L brine waste. For partial desalination of 70 brine down to 35 g/L, RF-ICP desalination achieved overall water cost as low as $2.57/m(3) ($0.41/barrel). This could translate into reduction in total water cost up to 31% for zero brine release scenarios, depending on the concentrated brine treatment cost. These results show that return flow architecture can improve the performance of electromembrane desalination, enabling more flexible water treatment for many real-world applications. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在电渗析(ED)和离子浓度偏振(ICP)脱盐等电渗析中,离子耗尽边界层构成脱盐,产物流,但也引起高电阻率和电压降。直接操纵流体流动流是用于打破这种基本折衷的新方法,用于电磁脱盐。在这项工作中,我们正在引入一种新型电磁脱盐架构,其允许进料流返回到膜的进料入口侧(特此命名为返回流量(RF)架构)以通过重新分配和控制来提高能量效率即使在高电流值下也是耗尽的边界层。在ICP海水淡化过程(RF-ICP)中检查了该想法的技术可行性,饲料盐度范围广,从10到70克/升。对于部分脱盐,与3倍更大膜面积(200cm(2))的批量生学(200cm(2))相比,RF-ICP(类似于75cm(2)的膜面积)达到了相似的功耗移除,转化为较低的最佳脱盐成本。 RF-ICP的技术经济分析已经进行了70克/升盐水废物的治疗。对于70盐水的部分脱盐至35克/升,RF-ICP海水淡化达到总水成本低至2.57 / m(3)(0.41美元/桶)。这可以转化为零盐水释放方案的总水量降低,这取决于浓缩的盐水处理成本。这些结果表明,回流架构可以提高电磁脱盐的性能,使许多真实应用的水处理能够更加柔性的水处理。 (c)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Water Research》 |2019年第1期|501-510|共10页
  • 作者单位

    MIT Dept Elect Engn & Comp Sci Cambridge MA 02139 USA;

    Hanoi Univ Sci & Technol Sch Transportat Engn 1 Daicoviet Hanoi Vietnam;

    Hanoi Univ Sci & Technol Sch Transportat Engn 1 Daicoviet Hanoi Vietnam;

    MIT Dept Elect Engn & Comp Sci Cambridge MA 02139 USA|MIT Dept Biol Engn Cambridge MA 02139 USA|Singapore MIT Alliance Res & Technol SMART Singapore Singapore;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Electrodialysis; Desalination; Ion concentration polarization; Unipolar; Return-flow;

    机译:电渗析;海水淡化;离子浓度极化;单极;回流;
  • 入库时间 2022-08-18 22:34:31

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