Effect of natural aquatic humic substances on the photodegradation of bisphenol A  

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作  者:ZHAN Manjun YANG Xi YANG Hongshen KONG Lingren 

机构地区:[1]Nanjing Research Institute of Environmental Protection,Nanjing 210013,China [2]State Key Laboratory of Pollution Control and Resource Reuse,School of the Environment,Nanjing University,Nanjing 210093,China [3]Department of Chemistry,Jiaying University,Meizhou 514015,China [4]Freshwater Fisheries Research Institute of Jiangsu Province,Nanjing 210017,China

出  处:《Frontiers of Environmental Science & Engineering》2007年第3期311-315,共5页环境科学与工程前沿(英文)

基  金:This work was supported by the National Natural Science Foundation of China(Grant No.20207004);the Key Technologies Research and Development Program of China(Grant No.2003BA808A17);the Natural Science Foundation of Jiangsu(Grant No.BK2002413).

摘  要:The photochemical degradation of bisphenol A(BPA)was studied in the presence of natural humic sub stances from different origins under simulated solar irradiation.BPA underwent insignificant direct photolysis in neutral water,but rapid photosensitized degradation in four humic substances solutions via pseudo-first-order reaction occurred.The photo-degradation rate of BPA was insensitive to the different initial BPA concentrations and was inhibited in aerated solution compared with the deoxygenated medium.The reactive oxy-gen species(ROS)such as·OH and 1O2 produced from excita-tion of humic substances under irradiation was determined from the quenching kinetic experiment using molecular probe.The five main intermediate photoproducts of BPA in Nordic lake fulvic acid(NOFA)were tentatively identified using gas chromatography/mass spectrometer(GC/MS).Based on the identification of ROS and the analysis of photoproduct formation,the possible phototransformation pathways of BPA were proposed,involving the direct pho-tolysis due to the energy transfer from the triplet state humic substance(3HS*)to BPA molecules and hydroxyl radical addition and oxidation as well.

关 键 词:bisphenol A humic acid fulvic acid reactive oxygen species hydroxyl radical singlet oxygen 

分 类 号:O62[理学—有机化学]

 

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