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首页> 外文期刊>Biochemical Engineering Journal >Methanotrophs: Multifunctional bacteria with promising applications in environmental bioengineering
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Methanotrophs: Multifunctional bacteria with promising applications in environmental bioengineering

机译:甲烷菌:多功能细菌在环境生物工程中的应用前景广阔

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摘要

Methane is an important greenhouse gas which is produced from many natural and anthropogenic sources. It plays an important role in overall global warming. A significant amount of methane is removed through microbiological oxidation by methanotrophic bacteria, which are widespread in the environment, including many extreme environments. The key enzyme of these microorganisms, methane monooxygenase (MMO), especially the soluble MMO, is remarkable in its broad substrate specificity. This unique capability, i.e. catalyzing reactions of environmental importance, has attracted great attention for applied microbiologists and biochemical engineers. In this review, recent advances in the application of methanotrophs to environmental bioengineering are summarized, including biodiversity, catalytic properties, and cultivation, etc. We have focused on two aspects of the application and potential value of methanotrophs in environmental bioengineering, namely methane removal and biodegradation of toxic compounds. The removal of methane produced from landfills has been widely studied, and much of this work can be used as a source of reference for coal mine gas removal. Many bioreactors using methanotrophs in bioremediation have been developed in recent years. These reactors have two forms of configuration, single-stage and multi-stage. Current limitations which may affect the engineering applications of methanotrophs are discussed, such as the lack of suitable methanotrophic isolate, gas transfer limitation, competitive inhibition of MMO, regeneration of reducing equivalents for MMO and product toxicity.
机译:甲烷是一种重要的温室气体,由许多自然和人为来源产生。它在全球总体变暖中起着重要作用。甲烷营养细菌通过微生物氧化将大量甲烷除去,甲烷氧化细菌广泛存在于包括许多极端环境在内的环境中。这些微生物的关键酶,甲烷单加氧酶(MMO),尤其是可溶性MMO,具有广泛的底物特异性。这种独特的功能,即对环境具有重要意义的催化反应,已引起应用微生物学家和生化工程师的极大关注。本文综述了甲烷营养生物在环境生物工程中的最新研究进展,包括生物多样性,催化特性和栽培等。我们着重研究了甲烷营养生物在环境生物工程中的应用和潜在价值两个方面,即甲烷去除和废水处理。生物降解有毒化合物。垃圾填埋场产生的甲烷的去除方法已被广泛研究,许多工作可作为去除煤矿瓦斯的参考资料。近年来,已经开发出许多在生物修复中使用甲烷营养生物的生物反应器。这些反应器具有两种形式的构造,单级和多级。讨论了可能会影响甲烷营养生物的工程应用的当前限制,例如缺乏合适的甲烷营养生物分离物,气体转移限制,MMO的竞争性抑制,MMO还原当量的再生和产品毒性。

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