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Photodegradation of bisphenol A in Fe(Ⅲ)-oxalate complexes solution
作者姓名:ZHAN Man-jun  YANG Xi  XIAN Qi-ming  KONG Ling-ren
作者单位:1. State Key Laboratory of Pollution Control and Resource Reuse,School of the Environment,Nanjing University,Nanjing 210093,China. 2. Jiaying University,M eizhou 514015,China
基金项目:Foundation item: The National Natural Science Foundation of China (No. 20207004; 50578074) and the National Key Technology and Development Program of China(No. 2003BA808A17);
摘    要:Introduction B isphenol A (2, 2-bis (4-dihydroxydiphenyl) propane) (BPA ) is w idely used as a raw m aterial for polycarbonate and epoxy resins. In previous studies, the residue level of B PA w as detected to be at a rather high level in natural w ater en…

关 键 词:光降解作用  光致氧化  反应氧  草酸盐  环境污染化学
文章编号:1001-0742(2006)04-0771-06
收稿时间:2005-09-19
修稿时间:2006-01-11

Photodegradation of bisphenol A in Fe(III)-oxalate complexes solution
ZHAN Man-jun,YANG Xi,XIAN Qi-ming,KONG Ling-ren.Photodegradation of bisphenol A in Fe(III)-oxalate complexes solution[J].Journal of Environmental Sciences,2006,18(4):771-776.
Authors:ZHAN Man-jun  YANG Xi  XIAN Qi-ming and KONG Ling-ren
Institution:State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, China.
Abstract:The aqueous photodegradation of bisphenol A (BPA) in the presence of Fe(III)-oxalate complexes (Fe(III)-Ox), which are common compositions of natural water, was investigated in this study. BPA underwent rapid indirect photolysis in Fe(III)-Ox solution under simulated solar irradiation, proceeding pseudo-first-order kinetics. The photolysis rate increased with decreasing pH or initial BPA level and increasing Fe(III)/oxalate concentration ratio. Hydroxyl radicals (*OH), which were generated from the photochemical processes of Fe(III)-Ox complexes and contributed to the photooxidation of BPA, were determined by molecular probe and electron spin resonance (ESR) methods with the steady-state concentration of 2.56 x 10(-14) mol/L. Superoxide anion radical (O2*-) was considered as the precursor of *OH and qualitatively determined by adding nitro blue tetrazolium as well as ESR experiments. Based on the structural analysis of the intermediate photoproducts of BPA in Fe(III)-Ox complexes solution, the possible degradation pathways of BPA were proposed, involving *OH addition, alkyl scission and alky oxidation. The results indicate that the photochemical reactivity of Fe(III) may affect the environmental fate of BPA in natural water significantly.
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