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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Conversion of bark-rich biomass mixture into fermentable sugar by two-stage dilute acid-catalyzed hydrolysis
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Conversion of bark-rich biomass mixture into fermentable sugar by two-stage dilute acid-catalyzed hydrolysis

机译:两阶段稀酸催化水解将富含树皮的生物质混合物转化为可发酵糖

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摘要

Despite high availability and low cost, bark has not actively been considered as a biomass feedstock for producing bio-based products due to its high content of extractives and lignin. In this study, to investigate the feasibility of utilizing bark-rich sawmill residues for producing value-added materials, the mixed Hemlock hog fuel/pin chips (85:15 by dry weight) from a local sawmill were converted into fermentable sugar by two-staige dilute sulfuric acid-catalyzed hydrolysis. Combining the sugar yields from the first-stage (190 degrees C for 150 s with 1.1% acid) and second-stage (210 degrees C for 115 s with 2.5% acid) hydrolyses, which aimed to maximize the recovery of mannose/galactose and glucose, respectively, 13.6 g of glucose (46% theoretical maximum), 10.5 g of mannose and galactose (98% theoretical maximum), and 2.8 g of xylose (85% theoretical maximum) were obtained per. 100 g of the original dry feedstock. (c) 2004 Elsevier Ltd. All rights reserved.
机译:尽管可获得性高且成本低,但是树皮由于其提取物和木质素的含量高而未被积极地认为是用于生产生物基产品的生物质原料。在这项研究中,为了研究利用富含树皮的锯木厂残渣生产增值材料的可行性,将本地锯木厂的混合铁杉猪燃料/别针碎片(按干重计为85:15)通过以下两种方法转化为可发酵糖:稀硫酸稀酸催化水解。结合第一阶段(190℃,持续150 s,酸度为1.1%)和第二阶段(210℃,115 s,酸度为2.5%)时的糖产量,以最大程度地回收甘露糖/半乳糖和分别获得13.6g葡萄糖(理论最大值的46%),10.5g甘露糖和半乳糖(理论最大值的98%)和2.8g木糖(理论最大值的85%)。 100克原始干原料。 (c)2004 Elsevier Ltd.保留所有权利。

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