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Transformation and biodegradation of l,2,3-trichloropropane (TCP)

机译:1,2,3-三氯丙烷(TCP)的转化和生物降解

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摘要

Purpose 1,2,3-Trichloropropane (TCP) is a persistent groundwater pollutant and a suspected human carcinogen. It is also is an industrial chemical waste that has been formed in large amounts during epichlorohydrin manufacture. In view of the spread of TCP via groundwater and its toxicity, there is a need for cheap and efficient technologies for the cleanup of TCP-contaminated sites. In situ or on-site bioremediation of TCP is an option if biodegradation can be achieved and stimulated. This paper presents an overview of methods for the remediation of TCP-contaminated water with an emphasis on the possibilities of biodegradation. Conclusions Although TCP is a xenobiotic chlorinated compound of high chemical stability, a number of abiotic and biotic conversions have been demonstrated, including abiotic oxidative conversion in the presence of a strong oxidant and reductive conversion by zero-valent zinc. Biotransformations that have been observed include reductive dechlorination, monooxygenase-mediated cometabolism, and enzymatic hydrolysis. No natural organisms are known that can use TCP as a carbon source for growth under aerobic conditions, but anaerobically TCP may serve as electron acceptor. The application of biodegradation is hindered by low degradation rates and incomplete mineralization. Protein engineering and genetic modification can be used to obtain microorganisms with enhanced TCP degradation potential.
机译:目的1,2,3-三氯丙烷(TCP)是一种持久的地下水污染物,可疑为人类致癌物。它也是一种工业化学废物,在表氯醇生产过程中已大量形成。鉴于TCP通过地下水的扩散及其毒性,需要一种廉价,有效的技术来清理受TCP污染的地点。如果可以实现并促进生物降解,则可以选择TCP的原位或现场生物修复。本文概述了用于修复受TCP污染的水的方法,重点是生物降解的可能性。结论尽管TCP是具有高化学稳定性的异种生物氯化化合物,但已证明了许多非生物和生物转化,包括在强氧化剂存在下的非生物氧化转化和零价锌的还原转化。已经观察到的生物转化包括还原性脱氯,单加氧酶介导的新陈代谢和酶促水解。尚无可在有氧条件下将TCP用作碳源生长的天然生物,但无氧TCP可以充当电子受体。低降解率和不完全矿化阻碍了生物降解的应用。蛋白质工程和基因修饰可用于获得具有增强的TCP降解潜力的微生物。

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