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Integrated Flow-Electrode Capacitive Deionization and Microfiltration System for Continuous and Energy-Efficient Brackish Water Desalination

机译:集成式电极静电容量去离子和微滤系统,用于连续高效节能的微咸水脱盐

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摘要

Flow-electrode capacitive deionization (FCDI) is an emerging electrochemically driven technology for brackish and/or sea water desalination with merits of large salt adsorption capacity, high flow efficiency, and easy electrode management. While FCDI holds promise for continuous operation, there are very few investigations with regard to the regeneration/reuse of flowable electrodes and the separation of brine from electrodes with these operation prerequisites for real nonintermittent water desalination. In this study, we propose a novel module design to achieve these critical steps involving integration of an FCDI cell and a ceramic microfiltration (MF) contactor. Our investigations reveal that the brine discharge rate is the dominant factor for stable and efficient operation of the integrated module. Results obtained show that the integrated FCDI/MF system can be used to successfully separate brackish water (of salinities 1, 2 and 5 g L-1) into both a potable stream (<0.5 g L-1) and a brine stream (concentrated by 2-20 times) in a continuous manner with extremely high water recovery rates (up to 97%) and reasonable energy consumption. Another notable characteristic of the integrated system is the high thermodynamic energy efficiency (similar to 30%) with such efficiencies 4-5 times larger than those of conventional capacitive deionization units and comparable to reverse osmosis and electrodialysis systems achieving similar separation efficiencies. In brief, the results of studies described here indicate that continuous and efficient operation of FCDI is a real possibility and pave the way for scale-up of this emerging technology.
机译:流电极电容去离子(FCDI)是一种新兴的电化学驱动技术,用于咸淡水和/或海水淡化,具有盐吸附容量大,流动效率高和电极易于管理的优点。尽管FCDI有望实现连续操作,但对于可流动电极的再生/再利用以及将盐水与电极分离的研究很少,而这些操作是真正非间歇性海水淡化的前提。在这项研究中,我们提出了一种新颖的模块设计,以实现涉及FCDI池和陶瓷微滤(MF)接触器集成的这些关键步骤。我们的研究表明,盐水排放速率是集成模块稳定高效运行的主要因素。获得的结果表明,集成的FCDI / MF系统可用于成功地将咸水(盐度分别为1、2和5 g L-1)分为饮用水(<0.5 g L-1)和盐水(浓缩)。连续2倍),具有极高的水回收率(高达97%)和合理的能耗。集成系统的另一个显着特点是具有较高的热力学能量效率(大约为30%),其效率是传统电容式去离子装置的4-5倍,可与实现类似分离效率的反渗透和电渗析系统相媲美。简而言之,此处描述的研究结果表明,FCDI的持续有效运行是一种切实可行的方法,并为扩大这种新兴技术铺平了道路。

著录项

  • 来源
    《Environmental Science & Technology》 |2019年第22期|13364-13373|共10页
  • 作者单位

    Univ New South Wales UNSW Water Res Ctr Sch Civil & Environm Engn Sydney NSW 2052 Australia;

    Univ New South Wales UNSW Water Res Ctr Sch Civil & Environm Engn Sydney NSW 2052 Australia|Tongji Univ Shanghai Inst Pollut Control & Ecol Safety Shanghai 200092 Peoples R China|UNSW Ctr Transformat Environm Technol Yixing 214206 Jiangsu Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 05:04:57

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