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Comparative study on lignocellulose liquefaction in water, ethanol, and water/ethanol mixture: Roles of ethanol and water

机译:水,乙醇和水/乙醇混合物中木质纤维素液化的比较研究:乙醇和水的作用

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This study aimed to investigate the roles of ethanol and water in the water/ethanol mixed solvent in liquefaction of lignocellulose biomass. To this end, an organosolv lignin, cellulose, cellulose/lignin (50:50, w/w) mixture and an acetone extracted white birch bark (EWBB) were comparatively liquefied in pure water, water/ethanol mixture (50:50, v/v) and pure ethanol at fixed condition (300 degrees C and 15 min). It was demonstrated that biomass liquefaction efficiency in three reaction media with respect to the bi-crude yield followed the order of water/ethanol mixed solvent pure water pure ethanol regardless of the feedstocks. Cellulose derived bio-crudes mainly contained esters, furfurals and furfurals derivatives, and carboxylic acid substantially existed in the bio-crude from cellulose liquefaction in water, while lignin derived bio-crude mainly contained aromatics, as expected. It was found that hot-compress water accelerated biomass depolymerization by hydrolyzing cellulose/hemi-cellulose, while on the other hand ethanol promoted lignin degradation by dissolving the de-polymerized lignin products and hence prevented the repolymerization of the reaction intermediates. In addition, the mixed ethanol-water solvent increased the permeation of the solvent into the lignocellulose biomass structure, and increased the solubility of liquefaction intermediates, hence contributing to a higher bio-crude yield in liquefaction of lignocellulose biomass. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本研究旨在研究乙醇/水在水/乙醇混合溶剂中对木质纤维素生物质液化的作用。为此,将有机溶剂木质素,纤维素,纤维素/木质素(50:50,w / w)混合物和丙酮提取的白桦树皮(EWBB)在纯水,水/乙醇混合物(50:50,v)中相对液化。 / v)和固定条件(300摄氏度和15分钟)的纯乙醇。已经证明,相对于双原油产率,三种反应介质中的生物质液化效率遵循水/乙醇混合溶剂纯水>纯乙醇的顺序,而与原料无关。纤维素衍生的生物原油主要包含酯,糠醛和糠醛衍生物,并且由于纤维素在水中液化而在生物原油中基本上存在羧酸,而木质素衍生的生物原油主要包含芳族化合物。发现热压缩水通过水解纤维素/半纤维素来加速生物质解聚,而另一方面,乙醇通过溶解解聚的木质素产物而促进了木质素降解,因此阻止了反应中间体的再聚合。另外,混合的乙醇-水溶剂增加了溶剂向木质纤维素生物质结构中的渗透,并增加了液化中间体的溶解度,因此有助于木质纤维素生物质液化中更高的生物粗品产率。 (C)2018 Elsevier Ltd.保留所有权利。

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