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抑制生物电化学系统中的产甲烷菌并富集产电菌。

Suppressing methanogens and enriching electrogens in bioelectrochemical systems.

机构信息

Department of Agricultural Engineering, Maharashtra Institute of Technology, Aurangabad 431010, India.

Pad. Dr. D. Y. Patil College of Agricultural Engineering and Technology, Talsande, Kolhapur 416112, India.

出版信息

Bioresour Technol. 2019 Apr;277:148-156. doi: 10.1016/j.biortech.2018.12.098. Epub 2018 Dec 27.

Abstract

Suppression of methanogens is considered as one of the main challenges in achieving the practical application of several types of bioelectrochemical system (BES). Feasibility of mixed culture as an inoculum in BES is mainly restricted by methanogenic population. Methanogens compete with electrogens (in bioanodes) or acetogens (in biocathodes) for substrate which results in diminishing Coulombic efficiency. Selection of particular inoculum pretreatment method affects the microbial diversity in anodic/cathodic microenvironments and hence the performance of BES. This review discusses various physical, chemical and biological pretreatment methods for suppressing the growth of methanogens. Selective microbial enrichment in anodic/cathodic biofilm can be promoted with bioaugmentation and/or applied external potential approach to harvest maximum Coulombs from the substrate. For field application of BES, physical pretreatment methods can be proposed with intermittent addition of chemical inhibitors and conversion of methane to electricity in order to make the process inexpensive along with recovering the maximum energy.

摘要

抑制产甲烷菌被认为是实现几种类型的生物电化学系统(BES)实际应用的主要挑战之一。混合培养物作为 BES 接种物的可行性主要受到产甲烷菌种群的限制。产甲烷菌与产电菌(在生物阳极)或乙酸菌(在生物阴极)竞争底物,从而导致库仑效率降低。选择特定的接种物预处理方法会影响阳极/阴极微环境中的微生物多样性,从而影响 BES 的性能。本文综述了各种物理、化学和生物预处理方法来抑制产甲烷菌的生长。通过生物增强和/或施加外部电位的方法,可以在阳极/阴极生物膜中进行选择性微生物富集,以从底物中收获最大的库仑。对于 BES 的现场应用,可以提出物理预处理方法,包括间歇添加化学抑制剂和将甲烷转化为电能,以使该过程在回收最大能量的同时具有成本效益。

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