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作 者:翁芝莹[1] 张洪才[1] 姚冰[1] 商璟[1] 王艺如[1] 柴春彦[1] 刘国艳[1]
机构地区:[1]上海交通大学农业与生物学院上海兽医生物技术重点实验室,上海200240
出 处:《环境工程学报》2012年第6期2109-2112,共4页Chinese Journal of Environmental Engineering
基 金:国家科技支撑计划世博科技专项基金资助项目(06dz05825)
摘 要:利用化工污染物能抑制荧光素酶催化发光反应这一特性,对水质中6种化工化合物分别进行毒性测试,建立一种快速检测水质中化工污染物毒性的生物学方法。实验结果表明,对苯二酚、4-氨基酚、苯胺、氯仿、盐酸邻联甲苯胺和硫柳汞的EC50值分别为:5.563、10.225、20.236、38.432、8.827和0.6 mg/L,6种污染物毒性大小依次为:硫柳汞>对苯二酚>盐酸邻联甲苯胺>4-氨基酚>苯胺>氯仿,相关系数>0.95。该方法为进一步研究基于荧光素酶反应体系检测水质中化工污染物综合毒性的生物传感器方法奠定基础。A biological method was established for fast determination of the toxicity in water. Six chemical contaminants ( hydroquinone, 4-aminophenol, aniline, chloroform, o-tolidine dihydrochloride, merthiolate) were used to investigate the toxicity by classic method of equal dose-effect experiment based on the principle that chemical contaminants can inhibit bioluminescence in luciferase reacting system. The results showed that ECs0 were 5. 563 mg/L for hydroquinone, 10. 225 mg/L for 4-aminophenol, 20. 236 mg/L for aniline, 38. 432 mg/L for chloroform, 8,827 mg/L for o-tolidine dihydrochloride and 0.6 mg/L for merthiolate, respectively. Toxicity level order of the chemical contaminants was as follows: merthiolate 〉 hydroquinone 〉 o-tolidine dihydrochlo- ride 〉 4-aminophenol 〉 aniline 〉 chloroform. The related coefficient was 〉 0.95. This research laid the founda- tion for the further study of biosensor used to detect the synthesis toxicity of chemical contaminants in water based on bioluminescence from luciferase reacting system.
分 类 号:X832[环境科学与工程—环境工程]
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