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The production of fermentable sugar and bioethanol from acacia wood by optimizing dilute sulfuric acid pretreatment and post treatment

机译:通过优化稀硫酸预处理和后处理来生产来自金合欢木的可发酵糖和生物乙醇

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摘要

Dilute sulfuric acid pretreatment was applied to make acacia wood susceptible to enzymatic hydrolysis. The optimal conditions for pretreatment were determined using a statistical approach; the maximum glucose yield (predicted: 53.8%; experimental: 54.5%) was obtained with 0.05% sulfuric acid at 200 degrees C for 5 min. This optimal condition yielded higher hemicellulose recovery in a short time compared to hydrothermal treatment, but the glucose yield was not enough to make fermentable sugar. However, application of mechanical refining to the pretreated solid and the addition of soy protein to the enzymatic hydrolysis led to the highest glucose conversion (73.8%) at 10 FPU (Cellic (R) CTec3)/g of glucan, and maximum conversion yield to ethanol reached 94.9% at 5 FPU. Considering this method's comparable glucose convertibility, even from lignin rich woody biomass, ability to recover hemicellulose, and lower enzyme requirement, dilute acid pretreatment can serve as a direct and promising route of producing acacia sugar.
机译:施加稀硫酸预处理以使合欢木易受酶水解的影响。使用统计方法确定预处理的最佳条件;最大葡萄糖产率(预测:53.8%;实验:54.5%)在200℃下以0.05%硫酸得到5分钟。与水热处理相比,这种最佳状况在短时间内产生了更高的半纤维素回收率,但葡萄糖产率不足以制造可发酵的糖。然而,在预处理的固体和向酶水解中加入大豆蛋白的机械精制和将大豆蛋白的添加到10fpu(CellicCTEC3)/ g的最高葡萄糖转化(73.8%),以及最大转化率乙醇在5个FPU达到94.9%。考虑到这种方法的相当葡萄糖可透性,即使是木质素富含木质生物量,恢复半纤维素的能力,较低的酶要求,稀酸预处理可作为产生金合欢糖的直接和有前途的途径。

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