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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Simultaneous saccharification and co-fermentation of un-detoxified rice hull hydrolysate by Saccharomyces cerevisiae ICV D254 and Spathaspora arborariae NRRL Y-48658 for the production of ethanol and xylitol
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Simultaneous saccharification and co-fermentation of un-detoxified rice hull hydrolysate by Saccharomyces cerevisiae ICV D254 and Spathaspora arborariae NRRL Y-48658 for the production of ethanol and xylitol

机译:酿酒酵母ICV D254和落叶松木NRRL Y-48658同时对未解毒的稻壳水解产物进行糖化和共同发酵以生产乙醇和木糖醇

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摘要

Co-fermentation and simultaneous saccharification of rice hull hydrolysate (RHH) were investigated for the production of ethanol and xylitol by Saccharomyces cerevisiae, Spathaspora arborariae, or the combination of both. In bioreactor cultures under oxygen limitation, S. cerevisiae was capable of metabolizing glucose from RHH, which contained small amounts of acetic acid, furfural, and hydroxymethylfurfural, achieving ethanol yields of 0.45 and concentrations of 10.5gL~(-1). In the co-culture of S. cerevisiae and S. arborariae pentoses and hexoses from RHH, were converted to ethanol and xylitol, with yields of 0.48 and 0.39, and concentrations of 11gL~(-1) and 3gL~(-1), respectively. The simultaneous saccharification and co-fermentation using both yeasts produced ethanol and xylitol to final concentrations of 14.5gL~(-1) and 3gL~(-1), respectively. Results showed good prospects to use co-cultures of S. cerevisiae and S. arborariae for the bioconversion of RHH into ethanol and xylitol without further detoxification.
机译:考察了稻壳水解物(RHH)的共同发酵和同时糖化过程,以通过酿酒酵母,山形葡萄球菌或二者的组合生产乙醇和木糖醇。在氧气限制下的生物反应器培养中,酿酒酵母能够从RHH代谢葡萄糖,其中含有少量的乙酸,糠醛和羟甲基糠醛,乙醇收率为0.45,浓度为10.5gL〜(-1)。在RH.Herber酿酒酵母和S.arborariae戊糖和己糖的共培养物中,将其分别转化为乙醇和木糖醇,产量分别为0.48和0.39,浓度为11gL〜(-1)和3gL〜(-1),分别。两种酵母同时糖化和共同发酵分别产生了乙醇和木糖醇,最终浓度分别为14.5gL〜(-1)和3gL〜(-1)。结果表明,使用酿酒酵母和侧柏葡萄球菌的共培养物将RHH生物转化为乙醇和木糖醇而无需进一步排毒,具有良好的前景。

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