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微生物一氧化碳转化在合成气净化和生物脱硫中的应用。

Microbial CO conversions with applications in synthesis gas purification and bio-desulfurization.

作者信息

Sipma Jan, Henstra Anne M, Parshina Sofiya M, Lens Piet N, Lettinga Gatze, Stams Alfons J M

机构信息

Sub-department of Environmental Technology, Wageningen University, Wageningen, The Netherlands.

出版信息

Crit Rev Biotechnol. 2006 Jan-Mar;26(1):41-65. doi: 10.1080/07388550500513974.

Abstract

Recent advances in the field of microbial physiology demonstrate that carbon monoxide is a readily used substrate by a wide variety of anaerobic micro-organisms, and may be employed in novel biotechnological processes for production of bulk and fine chemicals or in biological treatment of waste streams. Synthesis gas produced from fossil fuels or biomass is rich in hydrogen and carbon monoxide. Conversion of carbon monoxide to hydrogen allows use of synthesis gas in existing hydrogen utilizing processes and is interesting in view of a transition from hydrogen production from fossil fuels to sustainable (CO2-neutral) biomass. The conversion of CO with H2O to CO2 and H2 is catalyzed by a rapidly increasing group of micro-organisms. Hydrogen is a preferred electron donor in biotechnological desulfurization ofwastewaters and flue gases. Additionally, CO is a good alternative electron donor considering the recent isolation of a CO oxidizing, sulfate reducing bacterium. Here we review CO utilization by various anaerobic micro-organisms and their possible role in biotechnological processes, with a focus on hydrogen production and bio-desulfurization.

摘要

微生物生理学领域的最新进展表明,一氧化碳是多种厌氧微生物易于利用的底物,可用于生产大宗化学品和精细化学品的新型生物技术过程,或用于废水的生物处理。由化石燃料或生物质产生的合成气富含氢气和一氧化碳。将一氧化碳转化为氢气可使合成气用于现有的氢气利用过程,鉴于从化石燃料制氢向可持续(二氧化碳中和)生物质制氢的转变,这一点很有意义。一氧化碳与水转化为二氧化碳和氢气是由越来越多的微生物催化的。在废水和烟道气的生物技术脱硫中,氢气是首选的电子供体。此外,考虑到最近分离出一种能氧化一氧化碳、还原硫酸盐的细菌,一氧化碳是一种很好的替代电子供体。在此,我们综述了各种厌氧微生物对一氧化碳的利用及其在生物技术过程中的可能作用,重点是氢气生产和生物脱硫。

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