纤维素热解机理的分子模拟及产物形成途径
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国家自然科学基金资助项目(50776101)


Molecular simulation of pyrolysis mechanism of cellulose and analysis of formation paths of major products
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    摘要:

    为了从微观上确定纤维素热解主要产物的形成机理,对聚合度为10的纤维素单分子进行了分子动力学热裂解模拟,模拟发现温度上升到450 K时,开始有羟基键断裂,随着温度的升高,在600 K时糖苷键开始断裂形成纤维素单体,糖苷键断裂的同时也发现环状单体内部键断裂形成各种分子碎片。结合相关文献的实验结果,对模拟得到的各种分子碎片形成最终产物的可能途径进行了分析。

    Abstract:

    Molecular dynamics simulation method, based on the force field, is an important and effective method to study the structure and performance of molecule. For the purpose of understanding of formation mechanism of major products from the thermal decomposition of cellulose,this paper investigates the pyrolysis mechanism of cellulose with 10 monomers by molecular dynamics simulation. The simulation results show that hydroxide radical is produced through COH bond scission at about 450 K; with the increase of temperature, at about 600 K cellulose monomer gets to be formed by glucoside bond rupture, at the same time, pyranoid ring is opened and all kinds of molecular fragment are formed. Based on the other experimental results of references, the possible formation paths of major products through reaction of all kinds of molecular fragment are analyzed.

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黄金保,刘朝,魏顺安,范兴,江德正.纤维素热解机理的分子模拟及产物形成途径[J].重庆大学学报,2010,33(4):65-69.

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  • 收稿日期:2009-11-21
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