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Electricigens in the anode of microbial fuel cells: pure cultures versus mixed communities

机译:微生物燃料电池阳极中的电试剂:纯培养与混合群落

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摘要

Microbial fuel cell (MFC) is an environmentally friendly technology for electricity harvesting from a variety of substrates. Microorganisms used as catalysts in the anodic chamber, which are termed as electricigens, play a major role in the operation of MFCs. This review provides an introduction to the currently identified electricigens on their taxonomical groups and electricity producing abilities. The mechanism of electron transfer from electricigens to electrode is highlighted. The performances of pure culture and mixed communities are compared particularly. It has been proved that the electricity generation capacity and the ability to adapt to the complex environment of MFC systems constructed by pure microbial cultures are less than the systems constructed by miscellaneous consortia. However, pure cultures are useful to clarify the electron transfer mechanism at the microbiological level and further reduce the complexity of mixed communities. Future research trends of electricigens in MFCs should be focused on screening, domestication, modification and optimization of multi-strains to improve their electrochemical activities. Although the MFC techniques have been greatly advanced during the past few years, the present state of this technology still requires to be combined with other processes for cost reduction.
机译:微生物燃料电池(MFC)是一种环保技术,可用于从各种基材收集电能。在阳极室中用作催化剂的微生物(称为电试剂)在MFC的操作中起主要作用。这篇综述介绍了目前已确定的电驴的生物分类和发电能力。电子从电试剂转移到电极的机理被重点介绍。比较纯文化和混合社区的表现。已经证明,由纯微生物培养物构建的MFC系统的发电能力和适应复杂环境的能力小于由其他财团构建的系统。但是,纯培养物可用于在微生物学层面阐明电子转移机理,并进一步降低混合群落的复杂性。 MFCs中电致化剂的未来研究趋势应集中在筛选,驯化,修饰和优化多菌株以提高其电化学活性上。尽管MFC技术在过去几年中已经取得了很大进步,但该技术的当前状态仍需要与其他过程结合以降低成本。

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