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典型含氮有机物的氯消毒副产物生成潜能研究
引用本文:王超,胡洪营,王丽莎,田杰,藤江幸一.典型含氮有机物的氯消毒副产物生成潜能研究[J].中国给水排水,2006,22(15):9-12.
作者姓名:王超  胡洪营  王丽莎  田杰  藤江幸一
作者单位:1. 清华大学,环境科学与工程系,北京,100084
2. 日本丰桥技术科学大学,生态工程系,日本国
基金项目:NFSC-JST重大国际合作项目;国家自然科学基金
摘    要:污水再生利用是解决我国城市水资源短缺的有效途径,消毒是保证再生水水质安全的必要措施。氯消毒可以有效杀灭病原微生物,但同时也会生成各种具有毒性和“三致”效应的消毒副产物。由于含氮有机物是污水氯消毒副产物的一类重要前体物,故选取20种基本氨基酸为研究对象,考察了它们经氯消毒后生成三氯甲烷、卤乙酸、卤乙腈、三氯硝基甲烷、1,1-二氯-2-丙酮和1,1,1-三氯-2-丙酮的潜能。结果表明,各种氨基酸的消毒副产物生成潜能与它们的R基结构密切相关,其中R基上带有活性苯环的色氨酸和酪氨酸均表现出了较高的三氯甲烷、卤乙酸和卤乙腈生成潜能。

关 键 词:污水再生利用  氯化消毒副产物  生成潜能  氨基酸
文章编号:1000-4602(2006)15-0009-04
收稿时间:2006-04-04
修稿时间:2006-04-04

Chlorination Byproducts Formation Potentials of Typical Nitrogenous Organic Compounds
WANG Chao,HU Hong-ying,WANG Li-sha,TIAN Jie,Koichi Fujie.Chlorination Byproducts Formation Potentials of Typical Nitrogenous Organic Compounds[J].China Water & Wastewater,2006,22(15):9-12.
Authors:WANG Chao  HU Hong-ying  WANG Li-sha  TIAN Jie  Koichi Fujie
Affiliation:1. Department of Environmental Science and Engineering, Tsinghua University, Beijing 100084, China ; 2. Department of Ecological Engineering, Toyohashi University of Technology, Japan
Abstract:Wastewater reuse is an effective solution to mitigate water shortage problems in urban areas, and disinfection is necessary to ensure the quality of the reclaimed water. Although chlorine has been widely used to kill pathogenic organisms, it produces disinfection byproducts that contain toxicity, mutagenieity, eareinogenieity and teratogenieity. Nitrogenous organic compounds are important disinfection byproduct precursors. The formation potentials of chloroform, haloaeetie acids, haloaeetonitriles, ehloropierin, 1,1-Diehloropropanone, and 1,1,1-Triehloropropanone during the chlorination of 20 elementary amino acids were studied. The results show that the formation potentials of the disinfection byproducts of the amino acids are related with their -R structures. Tryptophan and tyrosine with active phenyl in their -R structures have high formation potentials of chloroform, haloaeetie acids and haloacetonitriles.
Keywords:wastewater reclamation and reuse  chlorination byproducts  formation potential  amino acid
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