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Subcritical water hydrolysis of rice straw for reducing sugar production with focus on degradation by-products and kinetic analysis

机译:稻草的亚临界水水解以减少糖的产生,重点是降解副产物和动力学分析

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The competitive reactions of reducing sugar production and degradation in the subcritical water hydrolysis of rice straw were investigated to optimise reducing sugar yield. The optimised conditions (280 degrees C, 20 MPa, rice straw concentration of 5 wt.% and agitation speed of 200 rpm) resulted in a reducing sugar yield of 0.346 g/g rice straw because of the enhanced reducing sugar production and decreased sugar degradation. The sugar yield increased when the temperature increased from 250 degrees C to 280 degrees C, but it decreased when the temperature further increased to 300 degrees C because of the degradation of monosaccharides (e.g. glucose and xylose) into by-products (e.g. 2-methyltetrahydrofuran and acetic acid). A first-order reaction model was developed to elucidate the competitive reaction kinetics of sugar production and degradation at various temperatures. The highest reducing sugar yield based on the model was achieved at 280 degrees C with the highest production and lowest degradation rates. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了稻草在亚临界水水解中降低糖产量和降解的竞争反应,以优化降低糖产量。在优化的条件下(280摄氏度,20兆帕,稻草的浓度为5 wt。%和搅拌速度为200 rpm),由于提高了还原糖的产量并降低了糖的降解,因此减少了0.346 g / g的稻草糖产量。当温度从250摄氏度增加到280摄氏度时,糖的产量增加,但是当温度进一步升高至300摄氏度时,糖的产量下降,这是因为单糖(例如葡萄糖和木糖)降解为副产物(例如2-甲基四氢呋喃)和乙酸)。建立了一级反应模型以阐明在不同温度下糖生产和降解的竞争反应动力学。基于该模型的最高还原糖产量是在280摄氏度下以最高产量和最低降解率实现的。 (C)2015 Elsevier Ltd.保留所有权利。

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