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Influence of Liquid-to-Gas Ratio on the Syngas Fermentation Efficiency: An Experimental Approach

机译:液对气体比对合成气发酵效率的影响:实验方法

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摘要

Syngas fermentation by methanogens is a novel process to purify biogas. Methanogens are able to ferment non-desirable CO2, H2, and CO to methane. However, to use methanogens on an industrial scale, more research has to be done. There are studies that discuss the growth of methanogens on syngas in combination with acetate. In this research, growth of methanogens on syngas as sole carbon source is discussed. Effluent of an anaerobic fed-batch was selectively cultivated with syngas in 400 mL Eppendorf© bioreactors. After a period of 7 days, fifteen 120 mL flasks were filled with three different liquid-to-gas ratios (1:1, 1:3, 1:5). Results showed that different liquid-to-gas ratios change the metabolic preference of the anaerobic microbial community. Moreover, complete conversion in a four-to-eight-day period, via the carboxidotrophic pathway, was observed in all three liquid-to-gas ratios.
机译:甲烷酮的合成气发酵是一种纯化沼气的新方法。甲烷能能够发酵不需要的CO 2,H 2和CO至甲烷。然而,为了在工业规模上使用甲烷,必须进行更多的研究。有研究表明,与醋酸盐的组合讨论了合成气的甲烷增长。在本研究中,讨论了作为唯一碳源合成气的甲烷酮的生长。在400ml EPPendorf©生物反应器中用合成气选择性培养厌氧喂食批次的流出物。在7天后,将十五个120mL烧瓶填充三种不同的液 - 气体比(1:1,1:3,1:5)。结果表明,不同的液 - 气体比例改变了厌氧微生物群落的代谢偏好。此外,在所有三种液 - 气体比例中观察到通过羧植物途径的四八天内完全转化。

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