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Deep Conversion of Carbon Monoxide to Hydrogen and Formation of Acetate by the Anaerobic Thermophile Carboxydothermus hydrogenoformans

机译:厌氧嗜热型嗜热羧甲基甲烷将一氧化碳深度转化为氢气并形成乙酸盐

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摘要

Carboxydothermus hydrogenoformans is a thermophilic strictly anaerobic bacterium that catalyses the water gas shift reaction, the conversion of carbon monoxide with water to molecular hydrogen and carbon dioxide. The thermodynamically favorable growth temperature, compared to existing industrial catalytic processes, makes this organism an interesting alternative for production of cheap hydrogen gas suitable to fuel CO-sensitive fuel cells in a future hydrogen economy, provided sufficiently low levels of CO are reached. Here we study CO conversion and final CO levels in cultures of C. hydrogenoformans grown in batch cultures that were started with a 100% CO gas phase with and without removal of formed CO2. Final CO levels were 117 ppm without CO2 removal and below 2 ppm with CO2 removal. The Gibbs free energy change calculated with measured end concentrations and the detection of acetate suggest that C. hydrogenoformans shifted from a hydrogenogenic to an acetogenic metabolism.
机译:氢氧甲烷是一种严格嗜热的厌氧细菌,可催化水煤气变换反应,将一氧化碳与水转化为分子氢和二氧化碳。与现有的工业催化方法相比,热力学上有利的生长温度使这种生物成为生产廉价氢气的有趣替代方法,只要能够达到足够低的CO水平,该廉价氢气就可以在未来的氢气经济中为对CO敏感的燃料电池提供燃料。在这里,我们研究了在分批培养中生长的氢氧甲烷的培养物中的CO转化率和最终CO水平,该分批培养以100%CO气相开始且不除去形成的CO2。最终的CO水平在不去除CO2的情况下为117 ppm,在去除CO2的情况下低于2 ppm。用测得的最终浓度和乙酸盐的检测计算出的吉布斯自由能变化表明,C.hydroformoformans从产氢代谢转变为产乙酸代谢。

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