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The effects of CO2 and H2 on CO metabolism by pure and mixed microbial cultures

机译:纯和混合微生物培养物中CO2和H2对CO代谢的影响

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摘要

BackgroundSyngas fermentation, the bioconversion of CO, CO2, and H2 to biofuels and chemicals, has undergone considerable optimization for industrial applications. Even more, full-scale plants for ethanol production from syngas fermentation by pure cultures are being built worldwide. The composition of syngas depends on the feedstock gasified and the gasification conditions. However, it remains unclear how different syngas mixtures affect the metabolism of carboxidotrophs, including the ethanol/acetate ratios. In addition, the potential application of mixed cultures in syngas fermentation and their advantages over pure cultures have not been deeply explored. In this work, the effects of CO2 and H2 on the CO metabolism by pure and mixed cultures were studied and compared. For this, a CO-enriched mixed culture and two isolated carboxidotrophs were grown with different combinations of syngas components (CO, CO:H2, CO:CO2, or CO:CO2:H2).
机译:背景技术合成气发酵是将CO,CO2和H2转化为生物燃料和化学物质的方法,已经进行了工业应用的优化。在全球范围内,还将建造更多规模的工厂,通过纯培养物通过合成气发酵生产乙醇。合成气的组成取决于气化的原料和气化条件。但是,尚不清楚不同的合成气混合物如何影响羧化营养菌的代谢,包括乙醇/乙酸盐的比例。此外,尚未深入研究混合培养物在合成气发酵中的潜在应用及其相对于纯培养物的优势。在这项工作中,研究并比较了CO2和H2对纯培养物和混合培养物对CO代谢的影响。为此,使用合成气成分(CO,CO:H2,CO:CO2或CO:CO2:H2)的不同组合培养富含CO的混合培养物和两个分离的羧化营养菌。

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