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Modulation of Acetone-Butanol-Ethanol Fermentation by Carbon Monoxide and Organic Acids

机译:一氧化碳和有机酸对丙酮丁醇乙醇发酵的调节

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摘要

Metabolic modulation of acetone-butanol-ethanol fermentation by Clostridium acetobutylicum with carbon monoxide (CO) and organic acids is described. CO, which is a known inhibitor of hydrogenase, was found to be effective in the concentration range of dissolved CO corresponding to a CO partial pressure of 0.1 to 0.2 atm. Metabolic modulation by CO was particularly effective when organic acids such as acetic and butyric acids were added to the fermentation as electron sinks. The uptake of organic acids was enhanced, and increases in butyric acid uptake by 50 to 200% over control were observed. Hydrogen production could be reduced by 50% and the ratio of solvents could be controlled by CO modulation and organic acid addition. Acetone production could be eliminated if desired. Butanol yield could be increased by 10 to 15%. Total solvent yield could be increased 1 to 3% and the electron efficiency to acetone-butanol-ethanol solvents could be increased from 73 to 78% for controls to 80 to 85% for CO- and organic acid-modulated fermentations. Based on these results, the dynamic nature of electron flow in this fermentation has been elucidated and mechanisms for metabolic control have been hypothesized.
机译:描述了丙酮丁醇梭菌用一氧化碳(CO)和有机酸对丙酮-丁醇-乙醇发酵的代谢调节。已经发现,作为氢化酶的已知抑制剂的CO在对应于0.1至0.2atm的CO分压的溶解的CO的浓度范围内有效。当将有机酸(例如乙酸和丁酸)作为电子接收器添加到发酵中时,CO的代谢调节特别有效。增强了有机酸的吸收,并且观察到丁酸吸收比对照增加了50%至200%。制氢量可减少50%,溶剂比例可通过调节CO和添加有机酸来控制。如果需要,可以消除丙酮的产生。丁醇收率可以提高10%至15%。总溶剂产率可提高1-3%,丙酮-丁醇-乙醇溶剂的电子效率可从对照的73-78%提高到CO-和有机酸调节的发酵的80-85%。基于这些结果,已经阐明了该发酵中电子流的动态性质,并假设了代谢控制的机理。

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