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水热过程中木质素热解行为及机理的反应分子动力学研究:水分子的作用

A reactive molecular dynamics study of thermal pyrolysis behavior and mechanisms of lignin during the hydrothermal process: The function of the water molecules.

作者信息

Jiang Chunhe, Liang Wang, Li Kejiang, Barati Mansoor, Conejo Alberto, Guo Peimin, Danaei Abdolkarim, Liang Zeng, Bu Yushan, Zhang Jianliang

机构信息

School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing 100083, China; Department of Materials Science and Engineering, University of Toronto, Toronto, ON M5S 3E4, Canada.

School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing 100083, China.

出版信息

Bioresour Technol. 2023 Jan;368:128338. doi: 10.1016/j.biortech.2022.128338. Epub 2022 Nov 17.

DOI:10.1016/j.biortech.2022.128338
PMID:36403908
Abstract

The lignin hydrothermal processing is an important option but a full understanding of the role played by the water molecules in the depolymerization of lignin is still lacking. In order to clarify the role of the water molecules in the depolymerization of lignin, the evolution of chemical bonds, microstructural changes, and possible mechanisms of product generation were compared during the pyrolysis process under vacuum and water conditions using Reactive Molecular Dynamics Simulation. Compared with vacuum conditions, the role of water changes with temperature, identifying three stages: promotion (1200-1800 K)-inhibition (2100-2400 K)-promotion (2700-3000 K). Also compared with vacuum conditions, hydrothermal processing can promote the cleavage of the ether bonds while inhibiting the destruction of carbocycles. Water molecules promote the depolymerization of lignin into more C-molecules, thereby generating more combustible gas resources. Based on the research results, the pyrolysis conditions of lignin can be flexibly controlled to obtain solids, liquids or gases.

摘要

木质素的水热加工是一种重要的选择,但目前仍缺乏对水分子在木质素解聚过程中所起作用的全面理解。为了阐明水分子在木质素解聚中的作用,利用反应分子动力学模拟,比较了在真空和有水条件下热解过程中化学键的演变、微观结构变化以及产物生成的可能机制。与真空条件相比,水的作用随温度变化,可分为三个阶段:促进(1200 - 1800K)-抑制(2100 - 2400K)-促进(2700 - 3000K)。同样与真空条件相比,水热加工可促进醚键的断裂,同时抑制碳环的破坏。水分子促进木质素解聚成更多的C分子,从而产生更多的可燃气体资源。基于研究结果,可以灵活控制木质素的热解条件以获得固体、液体或气体。

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