CSpace
Overview of recent developments of resource recovery from wastewater via electrochemistry-based technologies
Liu, Yuan1,2; Deng, Ying-Ying1,2,3; Zhang, Qi1,2,3; Liu, Hong1,2
2021-02-25
摘要As the rapid increase of the worldwide population, recovering valuable resources from wastewater have attracted more and more attention by governments and academia. Electrochemical technologies have been extensively investigated over the past three decades to purify wastewater. However, the application of these technologies for resource recovery from wastewater has just attracted limited attention. In this review, the recent (2010-2020) electrochemical technologies for resource recovery from wastewater are summarized and discussed for the first time. Fundamentals of typical electrochemical technologies are firstly summarized and analyzed, followed by the specific examples of electrochemical resource recovery technologies for different purposes. Based on the fundamentals of electrochemical reactions and without the addition of chemical agents, metallic ions, nutrients, sulfur, hydrogen and chemical compounds can be effectively recovered by means of electrochemical reduction, electrochemical induced precipitation, electrochemical stripping, electrochemical oxidation and membrane-based electrochemical processes, etc. Pros and cons of each electrochemical technology in practical applications are discussed and analyzed. Single-step electrochemical process seems ineffectively to recover valuable resources from the wastewater with complicated constituents. Multiple-step processes or integrated with biological and membrane-based technologies are essential to improve the performance and purity of products. Consequently, this review attempts to offer in-depth insights into the developments of next-generation of electrochemical technologies to minimize energy consumption, boost recovery efficiency and realize the commercial application. (C) 2020 Elsevier B.V. All rights reserved.
关键词Wastewater Resource recovery Electrochemical technologies Reaction fundamentals Secondary resource
DOI10.1016/j.scitotenv.2020.143901
发表期刊SCIENCE OF THE TOTAL ENVIRONMENT
ISSN0048-9697
卷号757页码:22
通讯作者Liu, Yuan(liuyuan@cigit.ac.cn)
收录类别SCI
WOS记录号WOS:000604432900107
语种英语