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Mechanism insight into the fast pyrolysis of xylose, xylobiose and xylan by combined theoretical and experimental approaches

机译:结合理论和实验方法深入研究木糖,木糖和木聚糖的快速热解机理

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摘要

The fast pyrolysis mechanism of xylose, xylobiose and xylan was investigated with combined fast pyrolysis experiments and quantum chemistry calculations. The results indicate that acyclic D-xylose is an important intermediate for the formation of the major pyrolytic products in xylose pyrolysis, i.e., 1,4-anhydro-D-xylopyranose (ADX), furfural (FF) and hydroxyacetaldehyde (HAA). ADX derives from the successive cyclization of D-xylose which is the only source for ADX formation. 3-Deoxy-xylose is the most important intermediate for FF formation. HAA results from the C-C bond scission by retro-aldol and cyclic Grob fragment. In addition, the five-membered intermediate derived from the ring-contraction reaction can transform into FF with high selectivity. The dehydrated xylose is also another source for HAA formation. The fast pyrolysis mechanism of xylobiose is similar to that of xylose, and thus similar pyrolytic product distribution can be obtained from them. However, the pyrolytic products of xylan differ significantly from those of xylose and xylobiose, which is ascribed to its high degree of polymerization and the branches in it. (C) 2019 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:结合快速热解实验和量子化学计算,研究了木糖,木糖和木聚糖的快速热解机理。结果表明,无环D-木糖是木糖热解中主要热解产物形成的重要中间体,即1,4-脱水-D-木吡喃糖(ADX),糠醛(FF)和羟基乙醛(HAA)。 ADX源自D-木糖的连续环化,D-木糖是ADX形成的唯一来源。 3-脱氧木糖是形成FF最重要的中间体。 HAA是由逆醛醇和环状Grob片段的C-C键断裂造成的。另外,源自环收缩反应的五元中间体可以高选择性地转化为FF。脱水的木糖也是形成HAA的另一个来源。木糖的快速热解机理类似于木糖,因此可以从它们获得相似的热解产物分布。然而,木聚糖的热解产物与木糖和木二糖的热解产物显着不同,这归因于其高聚合度和其中的分支。 (C)2019燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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