Opportunities and challenges of electrochemical water treatment integrated with renewable energy at the water-energy nexus

Arkadeep Kumar , Shu-Yuan Pan
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引用次数: 20

Abstract

Global challenges of reliable energy and clean water presently require concerted approaches in water-energy nexus. Electrochemical methods for water treatment have gathered attraction because of several advantages, such as scalable, modular operations, promising distributed systems, and high energy efficiency. These advantages of electrochemical methods over other water treatment systems make possible to use renewable energy such as photovoltaic solar cells, which might be intermittent in operation but produce enough energy for electrochemical systems. In this communication, we discuss four electrochemical systems (i.e., electrocoagulation, capacitive deionization, electrodialysis, and electrodeionization), powered with photovoltaic systems, for water treatment. We also critically examine the opportunities and challenges in integration of such electrochemical desalination systems with renewable energy for future research in addressing water-energy nexus.

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电化学水处理与可再生能源在水能关系中的机遇与挑战
目前,可靠能源和清洁水的全球挑战需要在水能关系方面采取协调一致的办法。电化学水处理方法因其可扩展性、模块化操作、分布式系统和高能效等优点而受到广泛关注。电化学方法相对于其他水处理系统的这些优点使得使用诸如光伏太阳能电池之类的可再生能源成为可能,这些可再生能源可能是间歇性的,但可以为电化学系统产生足够的能量。在本通讯中,我们讨论了四种电化学系统(即电凝,电容去离子,电渗析和电去离子),由光伏系统供电,用于水处理。我们还仔细研究了将这种电化学脱盐系统与可再生能源相结合的机遇和挑战,以便未来研究解决水能关系。
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