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基于生物炭电极的电容去离子技术综述:基于生物炭电极的制备、去离子机理及应用。

A comprehensive review of capacitive deionization technology with biochar-based electrodes: Biochar-based electrode preparation, deionization mechanism and applications.

机构信息

College of Environmental Science and Engineering, Ocean University of China, Qingdao 266100, PR China.

College of Environmental Science and Engineering, Ocean University of China, Qingdao 266100, PR China; Key Laboratory of Marine Environment and Ecology, Ministry of Education, Qingdao 266100, PR China.

出版信息

Chemosphere. 2022 Nov;307(Pt 3):136024. doi: 10.1016/j.chemosphere.2022.136024. Epub 2022 Aug 13.

Abstract

The recently developed techniques for desalination and wastewater treatment are costly and unsustainable. Therefore, a cost-effective and sustainable approach is essential to achieve desalination through wastewater treatment. Capacitive deionization (CDI), an electrochemical desalination technology, has been developed as a novel water treatment technology with great potential. The electrode material is one of the key factors that promotes the development of CDI technology and broadens the scope of CDI applications. Biochar-based electrode materials have attracted increasing attention from researchers because of their advantages, such as environmentally friendly, economical, and renewable properties. This paper reviews the methods for preparing biochar-based electrode materials and elaborates on the mechanism of CDI ion storage. We then summarize the applications of CDI technology in water treatment, analyze the mechanism of pollutant removal and resource recovery, and discuss the applicability of different CDI configurations, including hybrid CDI systems. In addition, the paper notes that environmentally friendly green activators that facilitate the development of pore structure should be developed more often to avoid the adverse environmental impact. The development of ion-selective electrode materials should be enhanced and it is necessary to comprehensively assess the impact of heteroatoms on selective ion removal and CDI performance. Electrooxidation of organic pollutants should be further promoted to achieve organic degradation by extending to redox reactions.

摘要

最近开发的海水淡化和废水处理技术成本高昂且不可持续。因此,需要采用经济高效且可持续的方法,通过废水处理实现海水淡化。作为一种具有巨大潜力的新型水处理技术,电容去离子(CDI)技术已经得到了发展。电极材料是推动 CDI 技术发展和拓宽 CDI 应用范围的关键因素之一。基于生物炭的电极材料因其环保、经济和可再生等优点,引起了研究人员的广泛关注。本文综述了基于生物炭的电极材料的制备方法,并详细阐述了 CDI 离子存储的机理。然后,我们总结了 CDI 技术在水处理中的应用,分析了污染物去除和资源回收的机制,并讨论了不同 CDI 配置的适用性,包括混合 CDI 系统。此外,本文还指出,应更频繁地开发环保型绿色活化剂以促进孔结构的发展,避免对环境造成不利影响。应加强对离子选择性电极材料的开发,并需要综合评估杂原子对选择性离子去除和 CDI 性能的影响。应进一步推动有机污染物的电氧化,通过扩展到氧化还原反应来实现有机降解。

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