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High gravity and high cell density mitigate some of the fermentation inhibitory effects of softwood hydrolysates

机译:高重力和高细胞密度减轻了软木水解产物的某些发酵抑制作用

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摘要

After steam pretreatment of lignocellulosic substrates the fermentation of the biomass derived sugars to ethanol is typically problematic because of both the generally low sugar concentrations that can be supplied and the presence of naturally occurring and process derived inhibitors. As the majority of the inhibitory materials are usually associated with the hemicellulose rich, water soluble component, this fraction was supplemented with glucose to simulate high solids, un-detoxified substrate to see if a high gravity/high cell consistency approach might better cope with inhibition. Several yeast strains were assessed, with the Tembec T1, T2 and Lallemand LYCC 6469 strains showing the greatest ethanol productivity and yield. The addition of supplemental glucose enabled the faster and quantitatively higher removal of hydroxymethylfurfural (HMF). High cell density could provide effective fermentation at high sugar concentrations while enhancing inhibitor reduction. A 77% ethanol yield could be achieved using strain LYCC 6469 after 48 h at high cell density. It was apparent that a high cell density approach improved ethanol production by all of the evaluated yeast strains.
机译:在木质纤维素底物的蒸汽预处理之后,生物质衍生的糖向乙醇的发酵通常是有问题的,因为既可以提供通常较低的糖浓度,又存在天然存在的和加工衍生的抑制剂。由于大多数抑制物质通常与富含半纤维素的水溶性成分有关,因此在此部分中添加葡萄糖以模拟高固体,无毒的底物,以查看高重力/高细胞稠度方法是否可能更好地应对抑制作用。 。评估了几种酵母菌株,其中Tembec T1,T2和Lallemand LYCC 6469菌株显示出最高的乙醇生产率和产量。添加补充葡萄糖能够更快,定量地去除羟甲基糠醛(HMF)。高细胞密度可以在高糖浓度下提供有效的发酵,同时增强抑制剂的减少。在高细胞密度下使用48小时后,使用LYCC 6469菌株可实现77%的乙醇收率。显然,高细胞密度方法可提高所有评估酵母菌株的乙醇产量。

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