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Saccharification of lignocellulosic biomass for biofuel and biorefinery applications-A renaissance for the concentrated acid hydrolysis?

机译:生物燃料和生物遗料应用的木质纤维素生物量的糖化 - 浓缩酸水解的文艺复兴?

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Hydrolysis of lignocelluloses using concentrated acids achieves near-theoretical sugar yields, and with fewer degradation products than the more commonly employed dilute acid hydrolysis process. In this paper, the dependence of sugar yield and the production of fermentation inhibitors on central process parameters is investigated, and the "severity factor" concept of one single process parameter characterizing the extent of the reaction is applied for the first time to concentrated acid hydrolysis of lignocellulosic biomass. Selected hydrolyzates have been fermented in the laboratory to investigate the effect of analyzed and unknown fermentation inhibitors in the hydrolyzates on fermentation performance. The concentrated acid hydrolysis process appears to be an interesting process for saccharification of lignocellulosic biomass for biofuel and biorefinery applications, with high sugar yields, low levels of fermentation inhibitors, good fermentability and good robustness towards changes in raw material quality.
机译:使用浓缩酸的木质纤维素水解实现近乎理论上的糖产率,并且具有比更常用的稀酸水解过程更少的降解产物。在本文中,研究了糖产量和发酵抑制剂在中央过程参数上的依赖性,并且一种单一工艺参数的“严重性因子”概念表征反应程度的一个单一工艺参数的概念首次施加至浓酸水解木质纤维素生物质。在实验室中已经发酵了所选水解物,以研究分析和未知发酵抑制剂在水解产物中的发酵性能的影响。浓酸水解过程似乎是生物燃料和生物遗料应用的木质纤维素生物质糖化的有趣方法,具有高糖产量,低水平的发酵抑制剂,良好的发酵性和对原材料质量变化的良好鲁棒性。

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