首页> 外文期刊>Spanish Journal of Agricultural Research >Hemicellulose-derived sugars solubilisation of rape straw. Cofermentation of pentoses and hexoses by Escherichia coli
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Hemicellulose-derived sugars solubilisation of rape straw. Cofermentation of pentoses and hexoses by Escherichia coli

机译:半纤维素衍生的糖增溶了油菜杆。大肠杆菌发酵戊糖和己糖

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摘要

Bioconversion of hemicellulose sugars is essential for increasing fuel ethanol yields from lignocellulosic biomass. We report for the first time with rape straw, bioethanol production from hemicellulose sugars. Rape straw was pretreated at mild conditions with sulfuric acid to solubilize the hemicellulose fraction. This pretreatment allows obtaining a prehydrolysate, consisting basically in a solution of monomeric hemicellulosic sugars, with low inhibitor concentrations. The remaining water insoluble solid constitutes a cellulose-enriched, free of extractives material. The influence of temperature (120 degrees C and 130 degrees C), acid concentration (2-4% w/v) and pretreatment time (30-180 min) on hemicellulose-derived sugars solubilisation was evaluated. The highest hemicellulosic sugars recovery, 72.3%, was achieved at 130 degrees C with 2% sulfuric acid and 60 min. At these conditions, a concentrated sugars solution, 52.4 g/L, was obtained after three acid consecutive contacts, with 67% xylose and acetic acid concentration above 4.5 g/L. After a detoxification step by activated charcoal or ion-exchange resin, prehydrolysate was fermented by ethanologenic Escherichia coli. An alcoholic solution of 25 g/L and 86% of theoretical ethanol yield was attained after 144 h when the prehydrolysate was detoxified by ion-exchange resin. The results obtained in the present work show sulfuric acid pretreatment under mild conditions and E. coli as an interesting process to exploit hemicellulosic sugars in rape straw.
机译:半纤维素糖的生物转化对于提高木质纤维素生物质的燃料乙醇产量至关重要。我们首次报告用强奸秸秆从半纤维素糖中生产生物乙醇。油菜秸秆在温和的条件下用硫酸预处理,以溶解半纤维素部分。该预处理允许获得低水解抑制剂浓度的预水解产物,该预水解产物基本上由单体半纤维素糖溶液组成。剩余的水不溶性固体构成富含纤维素的,不含萃取物的材料。评估了温度(120摄氏度和130摄氏度),酸浓度(2-4%w / v)和预处理时间(30-180分钟)对半纤维素衍生的糖增溶的影响。在130°C,2%的硫酸和60分钟的条件下,最高的半纤维素糖回收率达到72.3%。在这些条件下,连续三个酸接触后,可获得52.4 g / L的浓缩糖溶液,其中67%的木糖和乙酸浓度高于4.5 g / L。经过活性炭或离子交换树脂的解毒步骤后,将预水解物通过产乙醇的大肠杆菌发酵。 144小时后,用离子交换树脂将预水解产物解毒后,可获得25 g / L的乙醇溶液和理论乙醇产率的86%。在目前的工作中获得的结果表明,在温和的条件下进行硫酸预处理,大肠杆菌是在油菜秸秆中开发半纤维素糖的有趣方法。

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