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Pretreatment conditions of rice straw for simultaneous hydrogen and ethanol fermentation by mixed culture

机译:稻草混合培养发酵氢气和乙醇的预处理条件。

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The major hurdle to produce bioenergy from rice straw is the low yield of fermentable sugars. This study was carried out to evaluate the effect of pretreatment conditions (rice straw concentration, particle size, hydrolysis time, acid concentration, FeCl3 and enzyme additions) that can yield the maximum sugar monomers for simultaneous production of hydrogen and ethanol by mixed culture fermentation. The results of the evaluation showed that 0.8-1.0 M hydrochloric acid could give the maximum total sugar yield of 52.9%, 2.8 g/L glucose, 14.5 g/L xylose, and 38.6 g/L total reducing sugar from 100 g/L rice straw with particle size 0.15 mm, hydrolysis time 20 min. FeCl3 addition did not enhance the sugar yield but enzymatic hydrolysis increased the reducing sugar yield to 49.8 g/L. High volumetric hydrogen production of 771 mL/L and ethanol production of 1776 mg COD/L was obtained from the pretreated rice straw hydrolyzate. And the total energy from simultaneous hydrogen and ethanol production was highest at 355 J/g polysaccharides. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:从稻草生产生物能源的主要障碍是可发酵糖的低产量。进行这项研究以评估预处理条件(稻草浓度,粒径,水解时间,酸浓度,FeCl3和酶添加)的影响,该条件可产生最大量的糖单体,以通过混合培养发酵同时生产氢和乙醇。评估结果表明,从100 g / L的大米中,0.8-1.0 M盐酸可使最大总糖产率为52.9%,葡萄糖2.8 g / L,木糖14.5 g / L和总还原糖38.6 g / L。粒径为0.15毫米的秸秆,水解时间为20分钟。 FeCl 3的添加不能提高糖的产量,但是酶水解将还原糖的产量提高到49.8 g / L。从预处理的稻草水解产物中获得高容量的氢气产量771 mL / L和乙醇产量1776 mg COD / L。同时产生氢气和乙醇的总能量最高为355 J / g多糖。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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