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Evaluation of Candida acidothermophilum in ethanol production from lignocellulosic biomass

机译:嗜酸假丝酵母在木质纤维素生物质生产乙醇中的评价

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摘要

A Saccharomyces-cerevisiae-based simultaneous saccharification and fermentation (SSF) of lignocellulosic biomass is limited to an operating temperature of about 37 degrees C, and even a small increase in temperature can have a deleterious effect. This points to a need for a more thermotolerant yeast. To this end, S. cerevisiae D5A and a thermotolerant yeast, Candida acidothermophilum, were tested at 37 degrees C, 40 degrees C, and 42 degrees C using dilute-acid-pretreated poplar as substrate. At 40 degrees C, C. acidothermophilum produced 80% of the theoretical ethanol yield, which was higher than the yield from S. cerevisiae D5A at either 37 degrees C or 40 degrees C. At 42 degrees C, C. acidothermophilum showed a slight drop in performance. On the basis of preliminary estimates, SSF with C. acidothermophilum at 40 degrees C can reduce cellulase costs by about 16%. Proportionately greater savings can be realized at higher temperatures if such a high-temperature SSF is feasible. This demonstrates the advantage of using thermophilic or thermotolerant yeasts.
机译:木质纤维素生物质的基于酿酒酵母的同时糖化和发酵(SSF)被限制在约37摄氏度的操作温度下,甚至温度的小幅升高都可能具有有害作用。这表明需要更耐热的酵母。为此,使用稀酸预处理的杨树作为底物,在37℃,40℃和42℃下测试酿酒酵母D5A和耐热酵母,嗜酸假丝酵母。在40摄氏度时,嗜酸耐高温菌产生的理论乙醇产率为80%,高于在37摄氏度或40摄氏度下来自酿酒酵母D5A的产率。在42摄氏度时,嗜酸耐高温菌显示略有下降在性能上。根据初步估计,在40摄氏度下将嗜酸链球菌与SSF一起使用可使纤维素酶成本降低约16%。如果这样的高温SSF是可行的,则可以在更高的温度下实现更大的节省。这证明了使用嗜热或耐热酵母的优势。

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