Bond dissociation energies of lignin-carbohydrate complexes.

IF 3.1 3区 化学 Q2 CHEMISTRY, PHYSICAL
Thomas Elder, Martin Lawoko
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引用次数: 0

Abstract

Lignin-carbohydrate complexes, in which lignin and polysaccharides are directly connected, have been identified and extensively analyzed. To date, however, the origin of these structures has not been unequivocally established. That notwithstanding, it has been found that delignification, whether by conventional pulping and bleaching processes or in the biorefinery context, is effected by the presence of lignin-carbohydrate complexes. Using density functional theory calculations, the current work has evaluated the thermodynamics of bond dissociation as a function of structure and chemical composition. Among the lignin-carbohydrate complexes that have been identified, the homolytic bond dissociation energy is highest for the α-benzyl ethers and γ-ester, with phenyl glycosides being markedly less endothermic. This is consistent with observations on the recalcitrance of these compounds. Heterolytic cleavage reactions of the α-benzyl ethers are less endothermic, due to water solvation of the ions. The latter observation may provide support for the proposed homolytic cleavage reaction, since if heterolysis were operative, the α-benzyl ethers would not exhibit the level of recalcitrance that is observed experimentally.

木质素-碳水化合物复合物的键解离能。
木质素-碳水化合物复合物,其中木质素和多糖直接连接,已经确定和广泛的分析。然而,到目前为止,这些结构的起源还没有明确确定。尽管如此,人们已经发现,无论是通过传统的制浆和漂白过程还是在生物炼制过程中,脱木质素都受到木质素-碳水化合物复合物存在的影响。利用密度泛函理论计算,目前的工作已经评估了键解离的热力学作为结构和化学成分的函数。在已鉴定的木质素-碳水化合物配合物中,α-苄基醚和γ-酯的均解键能最高,而苯基糖苷的吸热性明显较低。这与观察到的这些化合物的顽固性是一致的。α-苄基醚的异裂解反应吸热较小,这是由于离子被水溶剂化所致。后一种观察结果可能为提出的均裂裂解反应提供支持,因为如果异裂发生,α-苄基醚不会表现出实验观察到的顽固性水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Faraday Discussions
Faraday Discussions 化学-物理化学
自引率
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发文量
259
期刊介绍: Discussion summary and research papers from discussion meetings that focus on rapidly developing areas of physical chemistry and its interfaces
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