Synergetic Effects of Alcohol/Water Mixing on the Catalytic Reductive Fractionation of Poplar Wood

木质素 生物炼制 化学 半纤维素 分馏 纤维素 氢解 纤维素乙醇 制浆造纸工业 纸浆厂 有机化学 生物净化 生物燃料 催化作用 化学工程 木屑 原材料 废物管理 环境科学 环境工程 流出物 工程类
作者
Tom Renders,Sander Van den Bosch,Thijs Vangeel,Thijs Ennaert,S.-F. Koelewijn,Gil Van den Bossche,Christophe M. Courtin,Wouter Schutyser,Bert F. Sels
出处
期刊:ACS Sustainable Chemistry & Engineering [American Chemical Society]
卷期号:4 (12): 6894-6904 被引量:140
标识
DOI:10.1021/acssuschemeng.6b01844
摘要

One of the foremost challenges in lignocellulose conversion encompasses the integration of effective lignin valorization in current carbohydrate-oriented biorefinery schemes. Catalytic reductive fractionation (CRF) of lignocellulose offers a technology to simultaneously produce lignin-derived platform chemicals and a carbohydrate-enriched pulp via the combined action of lignin solvolysis and metal-catalyzed hydrogenolysis. Herein, the solvent (composition) plays a crucial role. In this contribution, we study the influence of alcohol/water mixtures by processing poplar sawdust in varying MeOH/water and EtOH/water blends. The results show particular effects that strongly depend on the applied water concentration. Low water concentrations enhance the removal of lignin from the biomass, while the majority of the carbohydrates are left untouched (scenario A). Contrarily, high water concentrations favor the solubilization of both hemicellulose and lignin, resulting in a more pure cellulosic residue (scenario B). For both scenarios, an evaluation was made to determine the most optimal solvent composition, based on two earlier introduced empirical efficiency descriptors (denoted LFDE and LFFE). According to these measures, 30 (A) and 70 vol % water (B) showed to be the optimal balance for both MeOH/water and EtOH/water mixtures. This successful implementation of alcohol/water mixtures allows operation under milder processing conditions in comparison to pure alcohol solvents, which is advantageous from an industrial point of view.

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