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流动电极 CDI 短循环闭路操作用于咸水软化。

Short-Circuited Closed-Cycle Operation of Flow-Electrode CDI for Brackish Water Softening.

机构信息

UNSW Water Research Centre, School of Civil and Environmental Engineering , University of New South Wales , Sydney , New South Wales 2052 , Australia.

出版信息

Environ Sci Technol. 2018 Aug 21;52(16):9350-9360. doi: 10.1021/acs.est.8b02807. Epub 2018 Aug 13.

Abstract

While flow-electrode capacitive deionization (FCDI) is an emerging desalination technology, reduction in water hardness using this technology has so far received minimal attention. In this study, treatment of influents containing both monovalent and divalent cations using FCDI was carried out with flow-electrodes operated in short-circuited closed-cycle (SCC) configuration. Divalent Ca cations were selectively removed compared to monovalent Na with the selectivity becoming dominant when the FCDI unit was operated at lower current densities and hydraulic retention times. Results showed that SCC FCDI operation was much more energy-efficient for brackish water softening compared to operation in isolated closed-cycle (ICC) mode, particularly with implementation of energy recovery. This finding was largely ascribed to (i) charge neutralization of the flow-electrodes in SCC configuration and (ii) regeneration of the active materials to maintain pseudo "infinite" capacity during electrosorption. In addition, mixing of the flow-electrodes in SCC operation significantly inhibited pH excursion in the flow-electrode with resultant alleviation of calcium precipitation on the carbon surface.

摘要

虽然流动电极电容去离子(FCDI)是一种新兴的脱盐技术,但迄今为止,利用该技术降低水的硬度问题还没有得到足够的重视。在这项研究中,使用流动电极在短接闭路循环(SCC)配置下对含有一价和二价阳离子的进水进行处理。与一价的 Na 相比,二价的 Ca 阳离子被选择性地去除,当 FCDI 单元在较低的电流密度和水力停留时间下运行时,选择性变得更为显著。结果表明,与在隔离闭路循环(ICC)模式下运行相比,SCC FCDI 操作对于咸水软化更为节能,特别是在实施能量回收的情况下。这一发现主要归因于:(i)在 SCC 配置中流动电极的电荷中和,以及(ii)活性材料的再生,以在电吸附过程中保持近似“无限”的容量。此外,在 SCC 操作中混合流动电极显著抑制了流动电极中 pH 的偏移,从而减轻了碳酸钙在碳表面的沉淀。

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