Zhang Chengyu, Yu Zhisheng, Wang Xiangyang
College of Resources and Environment, University of Chinese Academy of Sciences, Beijing, China.
Binzhou Institute of Technology, Weiqiao-UCAS Science and Technology Park, Binzhou, Shandong Province, China.
Front Chem. 2022 Sep 15;10:1002038. doi: 10.3389/fchem.2022.1002038. eCollection 2022.
Antibiotics widely exist in medical wastewater, which seriously endanger human health. With the spread of the COVID-19 and monkeypox around the world, a large number of antibiotics have been abused and discharged. How to realize the green and efficient treatment of medical wastewater has become a hot research topic. As a common electrochemical water treatment technology, electrochemical oxidation technology (EOT) could effectively achieve advanced treatment of medical wastewater. Since entering the 21st century, electrochemical oxidation water treatment technology has received more and more attention due to its green, efficient, and easy-to-operate advantages. In this study, the research progress of EOT for the treatment of medical wastewater was reviewed, including the exploration of reaction mechanism, the preparation of functional electrode materials, combining multiple technologies, and the design of high-efficiency reactors. The conclusion and outlook of EOT for medical wastewater treatment were proposed. It is expected that the review could provide prospects and guidance for EOT to treat medical wastewater.
抗生素广泛存在于医疗废水中,严重危害人类健康。随着新冠疫情和猴痘在全球的传播,大量抗生素被滥用和排放。如何实现医疗废水的绿色高效处理已成为研究热点。作为一种常见的电化学水处理技术,电化学氧化技术(EOT)能够有效实现医疗废水的深度处理。自进入21世纪以来,电化学氧化水处理技术因其绿色、高效、易操作等优点受到越来越多关注。本研究综述了电化学氧化技术处理医疗废水的研究进展,包括反应机理探索、功能电极材料制备、多种技术联用以及高效反应器设计等方面,并对电化学氧化技术处理医疗废水进行了总结与展望,以期为该技术处理医疗废水提供前景和指导。