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首页> 外文期刊>Journal of Bioscience and Bioengineering >Bioethanol production from rice straw by a sequential use of Saccharomyces cerevisiae and Pichia stipitis with heat inactivation of Saccharomyces cerevisiae cells prior to xylose fermentation
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Bioethanol production from rice straw by a sequential use of Saccharomyces cerevisiae and Pichia stipitis with heat inactivation of Saccharomyces cerevisiae cells prior to xylose fermentation

机译:在木糖发酵之前,通过连续使用啤酒酵母和啤酒毕赤酵母从稻草中生产生物乙醇,并将啤酒酵母细胞热失活

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摘要

In order to establish an efficient bioethanol production system from rice straw, a new strategy to ferment the mixture of glucose and xylose by a sequential application of Saccharomyces cerevisiae and Pichia stipitis was developed, in which heat inactivation of S. cerevisiae cells before addition of P. stipitis was employed. The results showed that heating at 50℃ for 6 h was sufficient to give high xylose fermentation efficiency. By application of the inactivation process, 85% of the theoretical yield was achieved in the fermentation of the synthetic medium. At the same time, the xylitol production was reduced by 42.4% of the control process. In the simultaneous saccharification and fermentation of the lime-pretreated and CO2-neutralized rice straw, the inactivation of S. cerevisiae cells enabled the full conversion of glucose and xylose within 80 h. Finally, 21.1 g/l of ethanol was produced from 10% (w/w) of pretreated rice straw and the ethanol yield of rice straw reached 72.5% of the theoretical yield. This process is expected to be useful for the ethanol production from lignocellulosic materials in the regions where large-scale application of recombinant microorganisms was restricted.
机译:为了建立稻草的高效生物乙醇生产系统,开发了一种通过依次应用酿酒酵母和毕赤酵母来发酵葡萄糖和木糖混合物的新策略,其中在添加P之前对酿酒酵母细胞进行热灭活。使用了鼻炎。结果表明,在50℃加热6h足以提高木糖的发酵效率。通过应用灭活方法,合成培养基的发酵可达到理论产量的85%。同时,木糖醇的产量比对照过程减少了42.4%。在石灰预处理和二氧化碳中和的稻草同时糖化和发酵的过程中,酿酒酵母细胞的失活使得葡萄糖和木糖能够在80小时内完全转化。最终,从10%(w / w)的预处理稻草生产21.1 g / l乙醇,稻草的乙醇收率达到理论收率的72.5%。在限制重组微生物大规模应用的地区,该方法有望用于从木质纤维素材料生产乙醇。

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