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Enhancing understandability and performance of flow electrode capacitive deionisation by optimizing configurational and operational parameters: A review on recent progress

机译:通过优化配置和操作参数来提高流电极电容去离子的易于和性能:最近进展的综述

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The aim of the researchers working in the field of desalination is to develop a cost-effective, energy-efficient and eco-friendly desalination technology to address the scarcity of potable water. Nowadays, Capacitive Deionization (CDI) is an emerging desalination technology that has the potential to overcome challenges of existing technologies, but discontinuous desalination due to electrode saturation is a limiting factor. To overcome this limitation of CDI, concept of flow electrode was introduced in CDI resulting in a novel Flow electrode Deionization (FCDI) technology. FCDI has the potential of continuous desalination as flowable nature of electrode allows electrode material regeneration outside the FCDI cell. But the limitation of using flow electrode is drop-in electrical-conductive, that leads to a decrease in desalination performance and cell efficiency. For enhancement of electronic conductivity of flow electrode, researchers are working on the optimization of flow electrode constituents, i.e. carbon weight percentage (CWP), conductive additives and electrolyte concentrations. This article presents a systematic review of the recent advances and progress made in FCDI technology on the basis of the cell architecture, flow electrode constituents, energy recovery and application area. Moreover, this work discusses current shortcoming and future challenges associated with the development and practical applications of FCDI technology.
机译:在海水淡化领域工作的研究人员的目的是开发一种成本效益,节能和生态的海水淡化技术,以解决饮用水的稀缺性。如今,电容式去离子(CDI)是一种新兴的脱盐技术,具有克服现有技术的挑战,而是由于电极饱和而不连续的脱盐是限制因素。为了克服CDI的这种限制,在CDI中引入了流动电极的概念,得到了一种新颖的流动电极去离子(FCDI)技术。 FCDI具有连续脱盐的潜力,因为电极的流动性允许FCDI细胞外的电极材料再生。但是使用流动电极的限制是导电的导电,导致脱盐性能和电池效率降低。为了提高流动电极的电子电导率,研究人员正在研究流动电极成分的优化,即碳重量百分比(CWP),导电添加剂和电解质浓度。本文在细胞架构,流电极成分,能量回收和应用区域的基础上,对最近的FCDI技术进行了系统审查。此外,这项工作讨论了与FCDI技术的开发和实际应用相关的当前缺点和未来挑战。

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