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首页> 外文期刊>Applied and Environmental Microbiology >Cometabolism of low concentrations of propachlor, alachlor, and cycloate in sewage and lake water.
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Cometabolism of low concentrations of propachlor, alachlor, and cycloate in sewage and lake water.

机译:污水和湖水中低浓度的丙草胺,丙草胺和环氧化物的新陈代谢。

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摘要

Low concentrations of propachlor (2-chloro-N-isopropylacetanilide) and alachlor [2-chloro-2',6'-diethyl-N-(methoxymethyl)acetanilide] were not mineralized, cycloate (S-ethyl-N-ethylthiocyclohexanecarbamate) was slowly or not mineralized, and aniline and cyclohexylamine were readily mineralized in sewage and lake water. Propachlor, alachlor, and cycloate were extensively metabolized, but the products were organic. Little conversion of propachlor and alachlor was evident in sterilized sewage or lake water. The cometabolism of propachlor was essentially linear with time in lake water and was well fit by zero-order kinetics in short periods and by first-order kinetics in longer periods in sewage. The rate of cometabolism in sewage was directly proportional to propachlor concentration at levels from 63 pg/ml to more than 100 ng/ml. Glucose but not aniline increased the yield of products formed during propachlor cometabolism in sewage. No microorganism able to use propachlor as a sole source of carbon and energy was isolated, but bacteria isolated from sewage and lake water metabolized this chemical. During the metabolism of this herbicide by two of the bacteria, none of the carbon was assimilated. Our data indicate that cometabolism of these pesticides takes place at concentrations of synthetic compounds that commonly occur in natural waters.
机译:未矿化低浓度的丙草胺(2-氯-N-异丙基乙酰胺)和丙草胺[2-氯-2',6'-二乙基-N-(甲氧基甲基)乙酰苯胺],未生成环酸盐(S-乙基-N-乙基硫代环己烷氨基甲酸酯)。缓慢或没有矿化,苯胺和环己胺很容易在污水和湖水中矿化。丙草胺,丙草胺和环酸盐被广泛代谢,但产物是有机的。在消毒的污水或湖水中,丙草胺和甲草胺几乎没有转化。丙草胺的代谢作用在湖水中基本上与时间呈线性关系,很适合短期内的零阶动力学和较长时期内的污水的一阶动力学。污水中的新陈代谢速度与丙草胺浓度成正比,浓度范围为63 pg / ml至100 ng / ml以上。葡萄糖而不是苯胺提高了污水中丙草胺新陈代谢期间形成的产物的产率。没有分离出能够将丙草胺用作唯一碳和能量来源的微生物,但是从污水和湖水中分离出的细菌代谢了这种化学物质。在该除草剂被两种细菌代谢期间,没有碳被吸收。我们的数据表明,这些农药的新陈代谢发生在天然水中常见的合成化合物浓度下。

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