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Onsite bio-detoxification of steam-exploded corn stover for cellulosic ethanol production

机译:蒸汽爆玉米秸秆的现场生物解毒,用于生产纤维素乙醇

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In the process of ethanol production from steam-exploded corn stover (SECS), a cellulose-degradation strain of Aspergillus nidulans (FLZ10) was investigated whether it could remove the inhibitors released from steam exploded pretreatment, and thereby be used for biological detoxification on Saccharomyces cerevisiae. The results showed that FLZ10 removed 75.2% formic acid, 53.6% acetic acid, and 100% hydroxymethyl furfural (5-HMF) and furfural from the hydrolysate washed from SECS after 72. h cultivation. A cellulase activity of 0.49. IU/ml was simultaneously produced while the biological detoxification occurred. An ethanol yield of 0.45. g/g on glucose was obtained in the hydrolysate biodetoxified by FLZ10. The glucose consumption rate of FLZ10 was much lower than that of S. cerevisiae, thereby it had little competition with S. cerevisiae on glucose consumption. Based on SECS to ethanol mass balance analysis, with the onsite bio-detoxification, fermentation using S. cerevisiae effectively converted monomeric glucose with 94.4% ethanol yield.
机译:在蒸汽爆破的玉米秸秆(SECS)生产乙醇的过程​​中,研究了一种纤维素降解曲霉(Aspergillus nidulans,FLZ10)是否能去除蒸汽爆破预处理释放的抑制剂,从而用于酿酒酵母的生物解毒。啤酒酵母。结果表明,FLZ10培养72 h后,从SECS洗涤的水解物中除去了75.2%的甲酸,53.6%的乙酸和100%的羟甲基糠醛(5-HMF)和糠醛。纤维素酶活性为0.49。发生生物排毒时,同时产生IU / ml。乙醇产率为0.45。在通过FLZ10生物解毒的水解产物中,获得了g / g葡萄糖。 FLZ10的葡萄糖消耗速率远低于酿酒酵母,因此它与酿酒酵母在葡萄糖消耗方面几乎没有竞争。基于SECS到乙醇的质量平衡分析,通过现场生物解毒,酿酒酵母的发酵有效地转化了单体葡萄糖,乙醇产率为94.4%。

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