首页> 外文期刊>Biofuels, bioproducts & biorefining: Biofpr >Fermentation of hemicellulose liquor from Brewer's spent grain using Scheffersomyces stipitis and Pachysolen tannophilus for production of 2G ethanol and xylitol
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Fermentation of hemicellulose liquor from Brewer's spent grain using Scheffersomyces stipitis and Pachysolen tannophilus for production of 2G ethanol and xylitol

机译:使用Scheffersomyces毛细血管和Pachysolen香中,从酿酒师花谷物中发酵半纤维素液,用于生产2g乙醇和木糖醇

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摘要

Beer production generates brewer's spent grain as a byproduct. This biomass contains lignin, cellulose, and hemicellulose, and can be used for the production of second-generation (2G) ethanol and xylitol. For this to be economically viable, fermentable fractions must be used, allowing the conversion of cellulose and hemicellulose to ethanol. This study evaluated the fermentation of hemicellulose liquor from brewer's spent grain (HLBS) in aerobic and oxygen- limited conditions using Scheffersomyces stipitis and Pachysolen tannophilus. Results were compared with data obtained in a complex medium (YPX) and a minimal medium (MMX). In aerobic conditions, for S. stipitis in the HLBS medium, mu(max) = 0.12 h(-1), Y-ethanol/xylose = 0.14 and selectivity for ethanol over xylitol (S-ethanol/xylitol) 3.4 g(ethanol) g(xylitol)(-1) were obtained. Under oxygen-limited conditions, Y-ethanol/xylose = 0.22 and S-ethanol/xylitol = 1.17 g(ethanol) g(xylitol)(-1) were obtained. For P. tannophilus, under aerobic conditions, the HLBS medium gave mu(max) = 0.08 h(-1), and Y-ethanol/xylose = 0.005, with selectivity for ethanol over xylitol (S-ethanol/xylitol) of 0.12 g(ethanol) g(xylitol)(-1). In oxygen-limited conditions, Y-ethanol/xylose = 0.09 and S-ethanol/xylitol = 0.20 g(ethanol) g(xylitol)(-1) were obtained. This is because the metabolism of these aerobic yeasts directs the carbon flow to cell growth, while with oxygen limitation it is directed to metabolite production. The HLBS medium was promising for production in the context of a biorefinery. When comparing the two yeasts, S. stipitis presented better ethanol production and P. tannophilus better xylitol production under the conditions that were studied. (c) 2019 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:啤酒生产会产生啤酒花的谷物作为副产品。该生物质含有木质素,纤维素和半纤维素,可用于产生第二代(2g)乙醇和木糖醇。为此,在经济上可行,必须使用可发酵的级分,从而使纤维素和半纤维素转化为乙醇。该研究评估了使用什菲氏族核炎和麻痹剂香中的酿酒厂的酿酒颗粒(HLB)从酿酒器的籽粒(HLB)中的半纤维素液发酵。将结果与在复合培养基(YPX)和最小培养基(MMX)中获得的数据进行比较。在有氧条件下,对于HLBS培养基中的S.Stipitis,mu(max)= 0.12h(-1),y-乙醇/木糖= 0.14和在木糖醇(S-乙醇/木糖醇)上的乙醇选择性(s-乙醇/木糖醇)3.4g(乙醇)获得G(木糖醇)( - 1)。在氧气有限的条件下,获得Y-乙醇/木糖= 0.22和S-乙醇/木糖醇= 1.17g(乙醇)g(木糖醇)( - 1)。对于P.单宁核心,在有氧条件下,HLBS培养基给予MU(MAX)= 0.08h(-1)和Y-乙醇/木糖= 0.005,具有0.12g的木糖醇(S-乙醇/木糖醇)的乙醇选择性(乙醇)g(木糖醇)( - 1)。在氧有限的条件下,获得Y-乙醇/木糖= 0.09和S-乙醇/木糖醇= 0.20g(乙醇)g(木糖醇)( - 1)。这是因为这些有氧酵母的代谢引导了碳流向细胞生长,而具有氧气限制,它涉及代谢产物生产。 HLBS培养基在生物遗料的背景下承诺生产。比较两种酵母时,S.智能炎在研究的条件下呈现了更好的乙醇产量和P.单香毒糖醇生产。 (c)2019年化学工业协会和约翰瓦里和儿子有限公司

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