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Environmental fate and biodegradability of benzene derivatives as studied in a model aquatic ecosystem.

机译:在模型水生生态系统中研究了苯衍生物的环境命运和生物降解性。

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摘要

A model aquatic ecosystem is devised for studying relatively volatile organic compounds and simulating direct discharge of chemical wastes into aquatic ecosystems. Six simple benzene derivatives (aniline, anisole, benzoic acid, chlorobenzene, nitrobenzene, and phthalic anhydride) and other important specialty chemicals: hexachlorobenzene, pentachlorophenol, 2,6-diethylaniline, and 3,5,6-trichloro-2-pyridinol were also chosen for study of environmental behavior and fate in the model aquatic ecosystem. Quantitative relationships of the intrinsic molecular properties of the environmental micropollutants with biological responses are established, e.g., water solubility, partition coefficient, pi constant, sigma constant, ecological magnification, biodegradability index, and comparative detoxication mechanisms, respectively. Water solubility, pi constant, and sigma constant are the most significant factors and control the biological responses of the food chain members. Water solubility and pi constant control the degree of bioaccumulation, and sigma constant limits the metabolism of the xenobiotics via microsomal detoxication enzymes. These highly significant correlations should be useful for predicting environmental fate of organic chemicals.
机译:设计了一个模型水生生态系统,用于研究相对挥发性的有机化合物,并模拟化学废物向水生生态系统的直接排放。六种简单的苯衍生物(苯胺,苯甲醚,苯甲酸,氯苯,硝基苯和邻苯二甲酸酐)和其他重要的特种化学品:六氯苯,五氯苯酚,2,6-二乙基苯胺和3,5,6-三氯-2-吡啶醇选择用于研究模型水生生态系统的环境行为和命运。建立了环境微污染物的内在分子特性与生物学响应的定量关系,例如水溶性,分配系数,pi常数,sigma常数,生态放大倍数,生物降解指数和比较脱毒机理。水溶性,pi常数和sigma常数是最重要的因素,它们控制着食物链成员的生物学反应。水溶性和pi常数控制生物积累的程度,而sigma常数限制通过微粒体脱毒酶进行的异源生物的代谢。这些高度重要的相关性对于预测有机化学品的环境命运应该是有用的。

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