详细信息
光源和溶剂对十溴联苯醚光降解的影响
Effects of light sources and solvents on the photodegradation of decabromodiphenyl ether
文献类型:期刊文献
中文题名:光源和溶剂对十溴联苯醚光降解的影响
英文题名:Effects of light sources and solvents on the photodegradation of decabromodiphenyl ether
作者:张梅[1,2];林匡飞[1,2];刘莉莉[1,2];张卫[1,2];章立勇[1,2];杨莎莎[1,2];苏爱华[1,2]
机构:[1]国家环境保护化工过程环境风险评价与控制重点实验室,上海200237;[2]华东理工大学危险化学物质风险评价与控制研究中心,上海200237
年份:2009
卷号:31
期号:1
起止页码:26
中文期刊名:环境污染与防治
外文期刊名:Environmental Pollution & Control
收录:CSTPCD;;北大核心:【北大核心2008】;CSCD:【CSCD_E2011_2012】;
基金:国家自然科学基金资助项目(No.20677015);上海市博士后基金资助项目(No.07R214113);上海市教育发展基金会晨光计划项目(No.2007CG39);上海市环境工程重点学科项目(No.B506)
语种:中文
中文关键词:十溴联苯醚;光降解;光源;不同溶剂
外文关键词:decabromodiphenyl ether;photodegradation;light source;different solutions
摘要:研究了不同光源和溶剂对十溴联苯醚(DecaBDE)光降解特性的影响,并对其降解产物进行了探讨。结果表明,在所试光源和溶剂条件下,DecaBDE均有一定程度的光降解,且都近似符合一级降解动力学。同一光源下,不同溶剂对DecaBDE降解表现出不同的影响。在太阳光照射下,DecaBDE降解速率为甲苯>甲醇>正己烷>正己烷/丙酮>甲醇/水>乙醇/水;在模拟光源照射下,DecaBDE降解速率为甲苯>甲醇>甲醇/水>乙醇/水>正己烷>正己烷/丙酮;在紫外光照射下,DecaBDE降解速率为甲苯>甲醇>正己烷/丙酮>正己烷>甲醇/水>乙醇/水。同一溶剂中,DecaBDE降解速率均为紫外光>太阳光>模拟光源。尽管光源和溶剂对DecaBDE降解速率产生了一定影响,但降解途径基本一致,均为DecaBDE经光解脱溴产生低溴联苯醚。
Experiments were carried out to study the effects of different light sources and solvents on the photodegradation of Decabromodiphenyl Ether (DecaBDE).The degradation products were identified. The DecaBDE photodegradation data were represented by the first-order reaction kinetics model in each system. The degradation rate in tested solvents followed the order: toluene〉methanol〉hexane〉hexane/acetone〉methanol/water〉ethanol/water when DecaBDE was degradated by sunlight; toluene〉methanol〉methanol/water〉ethanol/water〉hexane〉hexane/acetone when DecaBDE was degradated by simulated light source; and toluene〉methanol〉hexane/acetone〉hexane〉 methanol/water〉ethanol/water when DecaBDE was degradated by UV light. In each solution,the degradation rate was strongly dependent on the light sources,and the effectiveness order was UV〉sunlight〉simulated light source. There was little difference in the degradation products,and DecaBDE were debrominated to lower brominated BDEs in all solvents and under all light sources.
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