灵活性(工程)
生化工程
新兴技术
工艺工程
污水处理
废水
计算机科学
过程(计算)
环境科学
纳米技术
工程类
材料科学
环境工程
人工智能
数学
操作系统
统计
作者
Fatima Mumtaz,Baosong Li,Maryam R. Al Shehhi,Xianshe Feng,Kean Wang
标识
DOI:10.1016/j.jwpe.2023.104695
摘要
Wastewater containing phenol and its derivatives causes global concerns on Health, Safety and Environment (HSE). A number of technologies (e.g. physical, chemical, electrochemical, biological) have been proposed for the treatment of such wastewater, all having their own pros and cons. Recently, hybrid/coupled technologies have emerged quickly to overcome the barriers of each technology, with good flexibility and high efficiency. Such hybrid/coupled technologies mainly encompass four categories: 1) physical-physical; 2) physical-biological; 3) physical-chemical; and 4) chemical-biological technology couplings. Recent progress in these technologies is reviewed in this article, with an emphasis on the fundamental mechanisms, performance, limitations and prospects. It is demonstrated that such coupled technologies (particularly, the advanced oxidation process or AOP-based and bio-based processes) offer a number of advantages over an individual technology alone, presenting increased technological efficiency for the treatment of Phenol-containing WasteWater (PWW).
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