首页> 外文会议>2015 Proceedings of the ASME 13th international conference on nanochannels, microchannels, and minichannels >PERFORMANCE CHARACTERIZATION OF A CAPACITIVE DEIONIZATION WATER DESALINATION SYSTEM WITH AN INTERMEDIATE SOLUTION AND LOW SALINITY WATER
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PERFORMANCE CHARACTERIZATION OF A CAPACITIVE DEIONIZATION WATER DESALINATION SYSTEM WITH AN INTERMEDIATE SOLUTION AND LOW SALINITY WATER

机译:具有中度溶液和低盐度水的电容式去离子水脱盐系统的性能表征

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In recent years, more efforts have been made to improve new and more efficient non-membrane-based methods for water desalination. Capacitive deionization (CDI), a novel technique for water desalination using an electric field to adsorb ions from a solution to a high-porous media, has the capability to recover a fraction of the energy consumed for the desalination during the regeneration process, which happens to be its most prominent characteristic among other desalination methods. This paper introduces a new desalination method that aims improving the performance of traditional CDI systems. The proposed process consists of an array of CDI cells connected in series with buffer containers in between them. Each buffer, serve two purposes: 1) average the outlet solution from the preceding cell, and 2) secure a continuous water supply to the following cell. Initial evaluation of the proposed CDI system architecture was made by comparing a two-cell-one-buffer assembly with a two cascaded cells array. Concentration of the intermediate solution buffer was the minimum averaged concentration attained at the outlet of the first CDI cell, under a steady state condition. The obtained results show that proposed CDI system with intermediate solution had better performance in terms of desalination percentage. This publication opens new opportunities to improve the performance of CDI systems and implement this technology on industrial applications.
机译:近年来,人们做出了更大的努力来改善新型,更有效的基于非膜的水脱盐方法。电容去离子(CDI)是一种使用电场将离子从溶液中吸附到高孔介质中进行水脱盐的新技术,具有回收再生过程中脱盐所消耗的能量的一部分的能力。在其他淡化方法中是其最突出的特征。本文介绍了一种旨在提高传统CDI系统性能的新型脱盐方法。所提出的过程由一系列CDI单元组成,这些CDI单元之​​间串联有缓冲容器。每个缓冲液有两个作用:1)平均前一个单元的出口溶液; 2)确保连续的水供应到下一个单元。通过将两个单元格一个缓冲区的组件与两个级联的单元格数组进行比较,对提议的CDI系统架构进行了初步评估。中间溶液缓冲液的浓度是在稳态条件下在第一个CDI池出口处获得的最小平均浓度。所得结果表明,提出的带有中间溶液的CDI系统在脱盐率方面具有更好的性能。该出版物为改善CDI系统的性能并在工业应用中实施此技术提供了新的机会。

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