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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Bioelectrochemical systems (BESs) towards conversion of carbon monoxide/syngas: A mini-review
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Bioelectrochemical systems (BESs) towards conversion of carbon monoxide/syngas: A mini-review

机译:生物电化学系统(BESS)转化一氧化碳/合成气:迷你评论

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摘要

Microbial conversion of carbon monoxide (CO)/syngas has been extensively investigated. The microbial conversion of CO/syngas offers numerous advantages over chemically catalyzed processes e.g. the specificity of the biocatalysts, the operation at ambient conditions and high conversion efficiencies. Bioelectrochemical systems (BESs) exploit the capacity of electrochemically active bacteria (EAB) to use insoluble electron acceptors or donors to produce electricity or added-value compounds. Electricity production from different organic sources in BESs has been broadly demonstrated, whereas electricity production from CO/syngas has been very little reported. Acetate oxidation by a consortium of carboxydotrophic and CO-tolerant EAB has been suggested to be the main pathway responsible for indirect electricity generation from CO/syngas. Although electricity production in BESs from several organic sources has been widely investigated, the interest on BESs research is currently moving to the production of added-value compounds by electro-fermentation (EF) processes. EF allows to modify redox balances by the use of electric circuits to fine tune metabolic pathways towards obtaining products with high economic value. Although EF has been widely studied, the potential of use CO-rich gas streams as substrate has been under explored. This review presents and discusses current advances on microbial conversion of CO/syngas in BESs.
机译:一氧化碳(CO)/合成气的微生物转化已被广泛研究。 CO /合成气的微生物转化在化学催化过程中提供了许多优点。生物催化剂的特异性,环境条件下的操作和高转化效率。生物电化学系统(BESS)利用电化学活性细菌(EAB)的能力来利用不溶性电子受体或供体产生电力或添加值化合物。从BESS中的不同有机来源的电力生产已被广泛展示,而CO /合成气的电力生产已经很少报道。已经提出了通过羧培养性和共同耐耐耐力EAB联盟的醋酸氧化是负责来自CO /合成气的间接发电的主要途径。虽然来自几个有机来源的贝塞尔的电力生产已被广泛调查,但对肥硕研究的兴趣目前正在通过电发酵(EF)过程来生产增加值化合物。 EF允许通过使用电路来修改氧化还原余额,以微调代谢途径,以获得具有高经济价值的产品。虽然EF已被广泛研究,但探讨了使用与基材的富含富含气流的潜力。本综述提出并讨论了贝塞中CO /合成气的微生物转换的当前进步。

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