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温度对氯代乙稀微生物还原脱卤作用的影响:综述。

Effect of temperature on microbial reductive dehalogenation of chlorinated ethenes: a review.

机构信息

Department of Isotope Biogeochemistry, Helmholtz Centre for Environmental Research - UFZ, Permoserstrasse 15, 04318 Leipzig, Germany.

出版信息

FEMS Microbiol Ecol. 2022 Sep 1;98(9). doi: 10.1093/femsec/fiac081.

Abstract

Temperature is a key factor affecting microbial activity and ecology. An increase in temperature generally increases rates of microbial processes up to a certain threshold, above which rates decline rapidly. In the subsurface, temperature of groundwater is usually stable and related to the annual average temperature at the surface. However, anthropogenic activities related to the use of the subsurface, e.g. for thermal heat management, foremost heat storage, will affect the temperature of groundwater locally. This minireview intends to summarize the current knowledge on reductive dehalogenation activities of the chlorinated ethenes, common urban groundwater contaminants, at different temperatures. This includes an overview of activity and dehalogenation extent at different temperatures in laboratory isolates and enrichment cultures, the effect of shifts in temperature in micro- and mesocosm studies as well as observed biotransformation at different natural and induced temperatures at contaminated field sites. Furthermore, we address indirect effects on biotransformation, e.g. changes in fermentation, methanogenesis, and sulfate reduction as competing or synergetic microbial processes. Finally, we address the current gaps in knowledge regarding bioremediation of chlorinated ethenes, microbial community shifts, and bottlenecks for active combination with thermal energy storage, and necessities for bioaugmentation and/or natural repopulations after exposure to high temperature.

摘要

温度是影响微生物活动和生态学的关键因素。一般来说,温度的升高会提高微生物过程的速率,直到达到一定的阈值,超过这个阈值,速率会迅速下降。在地下水中,地下水的温度通常是稳定的,并与地表的年平均温度相关。然而,与地下水资源利用有关的人为活动,如用于热能管理的热存储,会局部影响地下水的温度。本篇综述旨在总结不同温度下,氯代乙稀(城市地下水中常见的污染物)的还原脱卤活性的现有知识。这包括实验室分离物和富集培养物中不同温度下的活性和脱卤程度概述,微观和中观研究中温度变化的影响,以及在污染现场不同自然和诱导温度下的生物转化的观察。此外,我们还讨论了间接影响生物转化的因素,如发酵、产甲烷和硫酸盐还原等竞争或协同微生物过程的变化。最后,我们讨论了氯代乙稀生物修复、微生物群落变化、以及与热能储存有效结合的瓶颈、高温暴露后生物增强和/或自然种群恢复的必要性等方面的知识空白。

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