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Catalysis in Biomass Processing

机译:生物质加工中的催化

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摘要

Biomass has in recent years been considered as a raw material for the production of fuels and chemicals. This work discusses the reasons for the increased interest in mainly lignocellulosic biomass. Gasification, pyrolysis, and depolymerization by hydrolysis are analyzed as key biomass technology. We also discuss which of the sugars obtained via depolymerization by hydrolysis can be processed into fuel or key intermediates of the chemical industry. Lignocellulosic biomass contains such extractants as fatty acids and terpenes, and we therefore describe the catalytic reactions of these substances for the synthesis of fuels and chemicals. Some typical reactions of biomass processing (oxidation, hydrogenation, cracking, etc.) are conceptually close to the process widely known in the refining and chemical industries. There are, however, other considerations due to, e.g., the large number of functional (hydroxyl and other) groups, and the processing of biomass components therefore requires dehydration, aldol condensation, ketonization, decarboxylation, etc. We cover the fundamentals of the approaches to selecting catalysts for these reactions.
机译:近年来,生物质已被视为生产燃料和化学品的原料。这项工作讨论了主要对木质纤维素生物质兴趣增加的原因。气化,热解和水解解聚是关键的生物质技术。我们还将讨论通过水解解聚获得的哪些糖可以加工成燃料或化学工业的关键中间体。木质纤维素生物质包含脂肪酸和萜烯等提取剂,因此,我们描述了这些物质用于燃料和化学物质合成的催化反应。从概念上讲,生物质加工的一些典型反应(氧化,氢化,裂化等)与精炼和化学工业中众所周知的过程非常接近。但是,由于(例如)大量的官能团(羟基和其他),还有其他考虑,因此生物质组分的加工需要脱水,醛醇缩合,酮化,脱羧等。我们介绍了这些方法的基本原理选择用于这些反应的催化剂。

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