首页> 外文期刊>Journal of Agricultural and Food Chemistry >MINERALIZATION OF ALPHA-, GAMMA-, AND BETA-ISOMERS OF HEXACHLOROCYCLOHEXANE BY A SOIL BACTERIUM UNDER AEROBIC CONDITIONS
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MINERALIZATION OF ALPHA-, GAMMA-, AND BETA-ISOMERS OF HEXACHLOROCYCLOHEXANE BY A SOIL BACTERIUM UNDER AEROBIC CONDITIONS

机译:需氧条件下土壤细菌对六氯环己烷中α-,γ-和β-异构体的矿化作用

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摘要

The degradation of uniformly C-14-labeled isomers (alpha, gamma, and beta) of hexachlorocyclohexane (HCH), added separately to a mineral salts medium as a sale source of carbon, by a soil bacterium, Pseudomonas sp., under aerobic conditions was studied. During aerobic degradation, about 10-12% of the C-14 in alpha- and gamma-HCH was accounted for as (CO2)-C-14 as compared to 5% from beta-HCH. Most of the C-14 in alpha- and gamma-HCH accumulated as water-soluble products, while formation of water-soluble products from beta-HCH was negligible. Almost all of the C-14 in the three isomers of HCH was accounted for in different fractions (CO2, chloroform-diethyl ether, water phase) following bacterial degradation under aerobic conditions. GC-MS analysis of beta-HCH residues in the chloroform-diethyl ether extract suggested the formation of pentachlorocyclohexanol and tetrachlorocyclo-hexanediol as products of aerobic metabolism of beta-HCH.
机译:在有氧条件下,土壤细菌假单胞菌(Pseudomonas sp。)将六氯环己烷(HCH)的均匀C-14标记的异构体(α,γ和β)降解,作为碳的销售源分别添加到矿物盐介质中,作为碳的销售源。被研究了。在有氧降解期间,α-和γ-六氯环己烷中约10-12%的C-14被认为是(CO2)-C-14,而β-六氯环己烷中只有5%。甲型六氯环己烷和丙型六氯环己烷中的大多数C-14均以水溶性产物的形式积累,而由乙型六氯环己烷形成的水溶性产物可忽略不计。在好氧条件下细菌降解后,六氯环己烷的三个异构体中几乎所有的C-14都以不同的比例(CO2,氯仿-乙醚,水相)解释。对氯仿-乙醚萃取物中的乙型六氯环己烷残留进行GC-MS分析表明,作为有氧代谢的乙型六氯环己烷的产物,五氯环己醇和四氯环己二醇的形成。

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