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Oxidation of emerging organic contaminants by in-situ H_(2)O_(2) fenton system

作     者:Yuqin Ni Chuxiang Zhou Mingyang Xing Yi Zhou Yuqin Ni;Chuxiang Zhou;Mingyang Xing;Yi Zhou

作者机构:State Environmental Protection Key Lab of Environmental Risk Assessment and Control on Chemical ProcessesSchool of Resources&Environmental EngineeringEast China University of Science and TechnologyShanghai200237China Key Laboratory for Advanced Materials and Institute of Fine ChemicalsNational Engineering Laboratory for Industrial Wastewater TreatmentSchool of Chemistry and Molecular EngineeringEast China University of Science and Technology130 Meilong RoadShanghai200237China Department of Applied Natural SciencesTechnische Hochschule LubeckMonkhofer Weg 23923562 LubeckGermany 

出 版 物:《Green Energy & Environment》 (绿色能源与环境(英文版))

年 卷 期:2024年第9卷第3期

页      面:417-434页

核心收录:

学科分类:0820[工学-石油与天然气工程] 083002[工学-环境工程] 0830[工学-环境科学与工程(可授工学、理学、农学学位)] 0817[工学-化学工程与技术] 08[工学] 0703[理学-化学] 

基  金:supported by the National Natural Science Foundation of China(No.21906056 No.22176060) the Undergraduate Training Program on Innovation and Entrepreneurship(S202110251087) the Science and Technology Commission of Shanghai Municipality(22ZR1418600) Shanghai Municipal Science and Technology(No.20DZ2250400) 

主  题:In-situ H_(2)O_(2)production Fenton Emerging organic contaminants Photocatalysis Electrocatalysis 

摘      要:The existence and risk of emerging organic contaminants(EOCs)have been under consideration and paid much effort to degrade these *** system is one of the most widely used technologies to solve this *** original Fenton system relies on the hydroxyl radicals produced by Fe(Ⅱ)/H_(2)O_(2) to oxidize the organic ***,the application of the Fenton system is limited by its low iron cycling efficiency and the high risks of hydrogen peroxide transportation and *** introduction of external energy(including light and electricity etc.)can effectively promote the Fe(Ⅲ)/Fe(Ⅱ)cycle and the reduction of oxygen to produce hydrogen peroxide in *** review introduces three in-situ Fenton systems,which are electro-Fenton,Photo-Fenton,and chemical *** mechanism,influencing factors,and catalysts of these three in-situ Fenton systems in degrading EOCs are discussed *** review strengthens the understanding of Fenton and in-situ Fenton systems in degradation,offering further insight into the real application of the in-situ Fenton system in the removal of EOCs.

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