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Comparison of lab, pilot, and industrial scale low consistency mechanical refining for improvements in enzymatic digestibility of pretreated hardwood

机译:实验室,中试和工业规模低浓机械精制的比较,以改善预处理硬木的酶消化率

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摘要

Mechanical refining has been shown to improve biomass enzymatic digestibility. In this study industrial high-yield sodium carbonate hardwood pulp was subjected to lab, pilot and industrial refining to determine if the mechanical refining improves the enzymatic hydrolysis sugar conversion efficiency differently at different refining scales. Lab, pilot and industrial refining increased the biomass digestibility for lignocellulosic biomass relative to the unrefined material. The sugar conversion was increased from 36% to 65% at 5 FPU/g of biomass with industrial refining at 67.0 kWh/t, which was more energy efficient than lab and pilot scale refining. There is a maximum in the sugar conversion with respect to the amount of refining energy. Water retention value is a good predictor of improvements in sugar conversion for a given fiber source and composition. Improvements in biomass digestibility with refining due to lab, pilot plant and industrial refining were similar with respect to water retention value.
机译:已显示机械精制可以改善生物质的酶消化率。在这项研究中,对工业高产碳酸钠硬木纸浆进行了实验室,中试和工业精制,以确定机械精制是否在不同的精制规模下以不同的方式提高了酶促水解糖的转化效率。实验室,中试和工业精炼相对于未精炼的材料提高了木质纤维素生物质的生物质消化率。以5 FPU / g的生物量将糖的转化率从36%增加到65%,工业精炼为67.0 kWh / t,这比实验室和中试规模的精炼更节能。相对于精制能量,糖转化率最大。对于给定的纤维来源和组成,保水值是糖转化率改善的良好预测。由于保水值,实验室,中试工厂和工业炼制对生物质消化率的改善作用相似。

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