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可见光/Fenton光催化降解有机染料
引用本文:黄应平,刘德富,张水英,张德莉,马万红,赵进才. 可见光/Fenton光催化降解有机染料[J]. 高等学校化学学报, 2005, 26(12): 2273-2278
作者姓名:黄应平  刘德富  张水英  张德莉  马万红  赵进才
作者单位:1.三峡大学生态与环境科学研究中心,宜昌443002;2.中国科学院化学研究所,分子科学研究中心,北京100080
基金项目:中国科学院资助项目;科技部科研项目;湖北省新世纪高层次人才工程项目
摘    要:采用Fenton试剂(Fe3+/H2O2)在可见光条件下(λ>450nm)光催化降解目标染料化合物罗丹明B(RhodamineB,RhB).在pH<3.0体系中用可见光照射,能使RhB染料在光敏化作用下有效降解,反应160min后矿化率达到71.8%.采用ESR和溴甲酚绿(Bromocresolgreen,BCG)法跟踪测定活性氧化物种,通过对RhB降解过程的紫外-可见光谱、红外光谱分析及总有机碳量(TOC)跟踪测定,结果表明,Fe3+/H2O2/RhB体系在可见光照射下主要的活性氧化物种为羟基自由基,能有效地降解RhB.

关 键 词:Fenton  RhodamineB  光催化  降解,Fenton,Rhodamine B,光催化,降解,
文章编号:0251-0790(2005)12-2273-06
收稿时间:2004-10-18
修稿时间:2004-10-18

Fenton Photocatalytic Degradation of Organic Dye Under Visible Irradiation
HUANG Ying-Ping,LIU De-Fu,ZHANG Shui-Ying,ZHANG De-Li,MA Wan-Hong,ZHAO Jin-Cai. Fenton Photocatalytic Degradation of Organic Dye Under Visible Irradiation[J]. Chemical Research In Chinese Universities, 2005, 26(12): 2273-2278
Authors:HUANG Ying-Ping  LIU De-Fu  ZHANG Shui-Ying  ZHANG De-Li  MA Wan-Hong  ZHAO Jin-Cai
Affiliation:1. Research Center for Eco-environmental Sciences, China Three Gorges University, Yichang 443002, China;2. Research Center of Molecule Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100080, China
Abstract:A photooxidative system for degradation of organic dye pollutant RhB as an objective compound was reported under visible irradiation(λ>450 nm) by using Fe3+/H2O2 as the Fenton reagent. It was found that,in the system with pH<3.0,visible light irradiation significantly accelerates the degradation process by photosensitive effect.After 160 min the RhB was mineralized with a yield of 71.8%.Bromocresol green reaction spectrophotometrically,spin-trapping electron paramagnetic resonance,UV-Vis spectroscopy,IR and total organic carbon(TOC) measurements were used to detect the photoreaction process.The photocatalytic degradation pathway mainly involves the formation of &;#183;OH and carboxylie acids are the main intermediate products. H2O2 of Fe3+/H2O2/RhB system was utilized lowlier than that of supermolecular metal/organie complexes or supported catalysts system.
Keywords:Fenton  Rhodamine B
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