首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Combined alkali and hydrothermal pretreatments for oat straw valorization within a biorefinery concept
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Combined alkali and hydrothermal pretreatments for oat straw valorization within a biorefinery concept

机译:在生物精炼厂概念中将碱和水热联合预处理用于燕麦秸秆增值

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The aim of this work was the evaluation of lime pretreatment combined or not with previous step of autohydrolysis for oat straw valorization. Under selected conditions of lime pretreatment, 96% of glucan and 77% of xylan were recovered and 42% of delignification was achieved. Xylose fermentation to ethanol by metabolic engineered Saccharomyces cerevisiae (MEC1133) strain improved the ethanol production by 22% achieving 41 g/L. Alternatively, first step of autohydrolysis (S-0 = 4.22) allowed a high oligosaccharides recovery (68%) and subsequent lime pretreatment attained a 57% of delignification and 99% of glucan to glucose conversion. Oat straw processed by autohydrolysis and lime pretreatment reached the maximal ethanol concentration (50 g/L). Both strategies led to oat straw valorization into bioethanol, oligosaccharides and lignin indicating that these pretreatments are adequate as a first stage within an oat straw biorefinery. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是评估石灰预处理是否与燕麦秸秆增值自动水解的先前步骤相结合。在石灰预处理的选定条件下,可回收96%的葡聚糖和77%的木聚糖,并实现42%的脱木素作用。通过代谢工程酿酒酵母(MEC1133)菌株将木糖发酵为乙醇,可将乙醇产量提高22%,达到41 g / L。或者,自动水解的第一步(S-0 = 4.22)可使寡糖回收率很高(68%),随后的石灰预处理可实现57%的脱木素反应和99%的葡聚糖转化为葡萄糖。经过自动水解和石灰预处理的燕麦秸秆达到最大乙醇浓度(50 g / L)。两种策略均导致燕麦秸秆进入生物乙醇,低聚糖和木质素的平衡,这表明这些预处理作为燕麦秸秆生物精炼厂的第一步已足够。 (C)2016 Elsevier Ltd.保留所有权利。

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