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Performance of different methanogenic species for the microbial electrosynthesis of methane from carbon dioxide

机译:不同甲状腺素种类对二氧化碳微生物电气合成的性能

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摘要

Microbial electrosynthesis (MES) is a promising technology to convert CO2 and electricity into the biofuel methane using methanogens. Until now, most investigations on electro-methanogenesis are "proof-of-principle" studies. In this paper, different strains were quantitatively compared in regard to final methane concentration, yields based on CO2-conversion, productivities as well as Coulombic efficiencies in order to identify suitable organisms for MES. Methanococcus vannielii, Methanococcus maripaludis, Methanolacinia petrolearia, Methanobacterium congolense, and Methanoculleus submarinus were able to produce methane via MES at -700 mV vs. standard hydrogen electrode (SHE). Beside methane also biological H-2 production was detected during MES, which might be due to the involvement of hydrogenases. A direct electron transfer pathway is most likely. Obviously, M. maripaludis is the most resource efficient methane producer in microbial electrosynthesis regarding the methane productivity (8.81 +/- 0.51 mmol m(-2) d(-1)) and the Coulombic efficiency (58.9 +/- 0.8%).
机译:微生物电气合成(MES)是使用甲烷转化为生物燃料甲烷的二氧化碳和电力的有希望的技术。到目前为止,大多数对电甲烷的研究都是“原则上的原则”研究。在本文中,在最终甲烷浓度方面定量地比较了不同的菌株,基于CO 2转化,生产率以及库仑效率的产率,以鉴定MES的合适生物体。 Methanoccus Vannielii,Methanocccus maripludis,甲醇碱浮动素,凝结杆菌和甲烷纤维素潜水艇能够通过-700mV与标准氢电极(SHE)的MES生产甲烷。除了甲烷外,在MES期间还检测到生物H-2生产,这可能是由于氢酶的累及。直接电子转移途径最有可能。显然,M.Maripludis是微生物电气合成中最具资源有效的甲烷生产商,关于甲烷生产率(8.81 +/- 0.51mmol m(-2)d(-1))和库仑效率(58.9 +/- 0.8%)。

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