废水
环境修复
电化学
高级氧化法
阳光
过程(计算)
化学
联轴节(管道)
氧化法
工艺工程
环境化学
材料科学
污水处理
光化学
废物管理
生化工程
环境科学
化学工程
污染
环境工程
工程类
电极
冶金
光学
计算机科学
物理化学
物理
生物
生态学
操作系统
出处
期刊:Chemosphere
[Elsevier BV]
日期:2020-02-17
卷期号:250: 126198-126198
被引量:385
标识
DOI:10.1016/j.chemosphere.2020.126198
摘要
Wastewaters containing recalcitrant and toxic organic pollutants are scarcely decontaminated in conventional wastewater facilities. Then, there is an urgent challenge the development of powerful oxidation processes to ensure their organic removal in order to preserve the water quality in the environment. This review presents the recent development of an electrochemical advanced oxidation process (EAOP) like the photoelectro-Fenton (PEF) process, covering the period 2010–2019, as an effective treatment for wastewater remediation. The high oxidation ability of this photo-assisted Fenton-based EAOP is due to the combination of in situ generated hydroxyl radicals and the photolytic action of UV or sunlight irradiation over the treated wastewater. Firstly, the fundamentals and characteristics of the PEF process are described to understand the role of oxidizing agents. Further, the properties of the homogeneous PEF process with iron catalyst and UV irradiation and the benefit of sunlight in the homogeneous solar PEF one (SPEF) are discussed, supported with examples over their application to the degradation and mineralization of synthetic solutions of industrial chemicals, herbicides, dyes and pharmaceuticals, as well as real wastewaters. Novel heterogeneous PEF processes involving solid iron catalysts or iron-modified cathodes are subsequently detailed. Finally, the oxidation power of hybrid processes including photocatalysis/PEF, solar photocatalysis/SPEF, photoelectrocatalysis/PEF and solar photoelectrocatalysis/SPEF, followed by that of sequential processes like electrocoagulation/PEF and biological oxidation coupled to SPEF, are analyzed. • Review of the photoelectro-Fenton (PEF) process for wastewater remediation (2010–2019). • Characteristics, operation conditions and application of homogeneous PEF with UV light. • Higher oxidizing power of homogeneous solar PEF (SPEF) than homogeneous PEF. • Heterogeneous PEF with solid iron catalysts or iron-modified cathodes upon UV light. • Combination with photocatalysis, photoelectrocatalyis, electrocoagulation and biological oxidation .
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