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Faradaic Electrodes Open a New Era for Capacitive Deionization

机译:法拉第电极打开新时代用于电容去离子

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摘要

Capacitive deionization (CDI) is an emerging desalination technology for effective removal of ionic species from aqueous solutions. Compared to conventional CDI, which is based on carbon electrodes and struggles with high salinity streams due to a limited salt removal capacity by ion electrosorption and excessive co‐ion expulsion, the emerging Faradaic electrodes provide unique opportunities to upgrade the CDI performance, i.e., achieving much higher salt removal capacities and energy‐efficient desalination for high salinity streams, due to the Faradaic reaction for ion capture. This article presents a comprehensive overview on the current developments of Faradaic electrode materials for CDI. Here, the fundamentals of Faradaic electrode‐based CDI are first introduced in detail, including novel CDI cell architectures, key CDI performance metrics, ion capture mechanisms, and the design principles of Faradaic electrode materials. Three main categories of Faradaic electrode materials are summarized and discussed regarding their crystal structure, physicochemical characteristics, and desalination performance. In particular, the ion capture mechanisms in Faradaic electrode materials are highlighted to obtain a better understanding of the CDI process. Moreover, novel tailored applications, including selective ion removal and contaminant removal, are specifically introduced. Finally, the remaining challenges and research directions are also outlined to provide guidelines for future research.
机译:电容式去离子(CDI)是一种用于从水溶液中有效去除离子物种的新出现的脱盐技术。与传统CDI相比,基于碳电极和具有高盐度流的斗争由于通过离子吸收放度和过度的共离子排出量的有限的盐除去容量,新兴的竞技电极提供了升级CDI性能的独特机会,即实现由于离子捕获的游览反应,高盐度流的盐除去能力和节能脱盐。本文介绍了关于CDI的目前的游览电极材料的现有发展。在此,首先详细介绍基于法拉第电极的CDI的基础,包括新型CDI细胞架构,关键CDI性能指标,离子捕获机制以及游览电极材料的设计原理。总结了三个主要类别的游览电极材料,并讨论其晶体结构,物理化学特性和脱盐性能。特别地,突出了游览电极材料中的离子捕获机制以更好地理解CDI过程。此外,具体介绍了一种小型定制应用,包括选择性离子去除和污染物去除。最后,还概述了剩下的挑战和研究方向,为未来的研究提供指导。

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