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Dilute phosphoric acid pretreatment of wheat bran for enzymatic hydrolysis and subsequent ethanol production by edible fungi Neurospora intermedia

机译:食用菌真菌稀磷酸预处理麦麸的酶促水解及随后的乙醇生产

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The use of an underutilized and abundant lignocellulosic feedstock residue, wheat bran, was studied for ethanol production using dilute phosphoric acid pretreatment followed by fermentation using edible fungi Neurospora intermedia. Wheat bran was subjected to dilute acid pretreatment at varying acid concentrations (0.5-3.0% w/v), temperature (150-210 degrees C), and reaction time (5-20 min). The interaction of multiple factors showed the optimum pretreatment conditions at acid concentration of 1.75% (w/v), at 190 degrees C for 10 min. The maximum total polysaccharide yield of 0.27 +/- 0.01 g/g dry biomass loading, corresponding to 66% of the theoretical maximum was observed. Subsequent fermentation with N. intermedia showed 85% of the theoretical maximum ethanol yield from the untreated bran glucose. The effect of the dilute acid pretreatment on the functional groups of the wheat bran cellulose was determined with 78% reduction in the cellulose crystallinity index. The validation of the dilute phosphoric acid pretreatment in a demo plant is also reported for the first time. Enzymatic hydrolysis of pretreated slurry from the demo plant showed 85% total theoretical yield of polysaccharides. Compared to the untreated bran biomass, an increase of 51% was observed in the ethanol yield following pretreatment, with a total ethanol yield of 95% theoretical maximum. Higher yield of ethanol is also attributed to the xylose fermenting capability of the fungi. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了利用稀磷酸进行预处理,然后使用食用真菌Neurospora intermedia进行发酵,以生产乙醇的未充分利用和丰富的木质纤维素原料残渣麦麸。在不同的酸浓度(0.5-3.0%w / v),温度(150-210摄氏度)和反应时间(5-20​​分钟)下对麦麸进行稀酸预处理。多种因素的相互作用显示了在190°C下10分钟的酸浓度为1.75%(w / v)的最佳预处理条件。观察到最大总多糖产量为0.27 +/- 0.01 g / g干生物量,相当于理论最大值的66%。随后用中间芽孢杆菌发酵显示未处理的麸皮葡萄糖的理论最大乙醇产率的85%。通过使纤维素结晶度降低78%,确定了稀酸预处理对麦麸纤维素的官能团的影响。还首次报道了演示工厂中稀磷酸预处理的验证。演示工厂中预处理浆液的酶水解显示,多糖的理论总收率为85%。与未处理的麸皮生物质相比,预处理后的乙醇收率提高了51%,总乙醇收率为理论最大值的95%。乙醇的较高产率也归因于真菌的木糖发酵能力。 (C)2015 Elsevier B.V.保留所有权利。

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