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综述:三氯乙烯(TCE)微生物修复技术的进展。

A review: advances in microbial remediation of trichloroethylene (TCE).

机构信息

Applied Research Center Florida International University, Miami, Florida 33174, USA.

出版信息

J Environ Sci (China). 2010;22(1):116-26. doi: 10.1016/s1001-0742(09)60082-6.

Abstract

Research works in the recent past have revealed three major biodegradation processes leading to the degradation of trichloroethylene. Reductive dechlorination is an anaerobic process in which chlorinated ethenes are used as electron acceptors. On the other hand, cometabolism requires oxygen for enzymatic degradation of chlorinated ethenes, which however yields no benefit for the bacteria involved. The third process is direct oxidation under aerobic conditions whereby chlorinated ethenes are directly used as electron donors by microorganisms. This review presented the current research trend in understanding biodegradation mechanisms with regard to their field applications. All the techniques used are evaluated, with the focus being on various factors that influence the process and the outcome.

摘要

最近的研究工作揭示了导致三氯乙烯降解的三个主要生物降解过程。还原脱氯是一种厌氧过程,其中氯代乙烯被用作电子受体。另一方面,共代谢需要氧气才能进行氯代乙烯的酶促降解,但这对涉及的细菌没有任何益处。第三个过程是有氧条件下的直接氧化,其中微生物直接将氯代乙烯用作电子供体。本综述介绍了目前在理解生物降解机制及其现场应用方面的研究趋势。评估了所使用的所有技术,重点是影响该过程和结果的各种因素。

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