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首页> 外文期刊>Biomass Conversion and Biorefinery >Deconstruction of hybrid poplar to monomeric sugars and aromatics using ethanol organosolv fractionation
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Deconstruction of hybrid poplar to monomeric sugars and aromatics using ethanol organosolv fractionation

机译:用乙醇有机溶胶分级解构杂交杨杂交杨和芳烃的解构

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摘要

Acidic ethanol organosolv fractionation of hybrid poplar was investigated to determine the impact of pretreatment conditions on the resulting biomass and lignin properties and to assess the subsequent deconstruction of the cell wall biopolymers to monomeric sugars and aromatics. It was found that increasing reaction severity (i.e., time and temperature) during the organosolv fractionation increased the rate of delignification and xylan solubilization while the lignins recovered from the liquors were found to exhibit lower degrees of polymerization. Glucose hydrolysis yields 75% at moderate enzyme loadings (30 mg/g glucan) could be obtained for the more severe pretreatment conditions. The lignins recovered from the pretreatment liquors were subjected to fractionation using a sequential extraction with solvents of increasing polarity. It was found that the low molar mass, low polydispersity lignins increased in pretreatment liquors with increasing time and temperature and were concentrated in the methanol fraction while a high molar mass fraction was extracted with the diethyl ether. We hypothesize that the extraction of the high molar mass fraction with diethyl ether is due to partial ethyl O-alkylation of lignin hydroxyl groups during pretreatment, rendering lignins more soluble in the non-polar solvent. Finally, depolymerization of unfractionated lignins by thioacidolysis resulted in mass yields of aromatic monomers ranging from 80 to 157 mg monomer per gram of lignin and that these yields exhibited strong positive correlations to the lignin beta-O-4 content, molar mass, and strong negative correlations to the pretreatment temperature.
机译:研究了杂交杨树的酸性乙醇子系统溶解,以确定预处理条件对所得生物质和木质素性质的影响,并评估随后的细胞壁生物聚合物对单体糖和芳烃的解构。结果发现,在有机溶液分馏期间增加反应严重程度(即时间和温度)增加了脱氨酸和木聚糖溶解的速率,同时发现从液体中回收的木质素具有较低的聚合程度。葡萄糖水解产率&在预处理条件下,可以获得适度酶载荷(30mg / g葡聚糖)的75%。使用序列提取从预处理液中回收的木质素用序列提取,溶剂增加极性的溶剂。发现低摩尔质量,低聚分散性木质素在预处理液体中增加,随着时间和温度的增加,并浓缩,在甲醇部分中浓缩,同时用乙醚萃取高摩尔质量级分。我们假设用乙醚的高摩尔质量级分的提取是由于在预处理期间木质素羟基的部分乙基O-烷基化,使木质素更溶于非极性溶剂。最后,通过硫代酰基解的未分割的木质素的解聚导致芳族单体的质量产量为每克木质素的80-157mg单体,并且这些产率与木质素β-O-4含量,摩尔质量和强度负面表现出强烈的正相关性与预处理温度的相关性。

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