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高温下正庚烷热裂解的反应分子动力学研究。

A reactive molecular dynamics study of n-heptane pyrolysis at high temperature.

机构信息

State Key Laboratory of Molecular Reaction Dynamics and Center for Theoretical and Computational Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Science, Dalian 116023, P.R. China.

出版信息

J Phys Chem A. 2013 Apr 25;117(16):3266-78. doi: 10.1021/jp311498u. Epub 2013 Apr 16.

Abstract

n-Heptane is the most important straight chain paraffin in the fossil-fuel industry. In this work, pyrolysis of n-heptane at high temperature is investigated by a series of ReaxFF based reactive molecular dynamic simulations. The pyrolysis correlated intermediate reactions, important product/intermediate distributions, and corresponding kinetics behaviors are systematically analyzed at atomistic level. The results indicate that the entire pyrolysis process is radical-dominated. The unimolecular dissociation is the main pathway of n-heptane decomposition. Initiation of the decomposition is mainly through C-C bond fission. Central C-C bonds would dissociate prior to the terminal ones. Besides, the Rice-Kossiakoff theory is proved for the pyrolysis of n-heptane at the atomistic level. To give a better description of the pyrolysis behavior, some alkane related intermolecular reactions should be considered in the mechanism. The apparent activation energy extracted from the present simulations is 43.02-54.49 kcal/mol in the temperature range 2400-3000 K, which is reasonably consistent with the experimental results.

摘要

正庚烷是化石燃料工业中最重要的直链烷烃。在这项工作中,通过一系列基于 ReaxFF 的反应分子动力学模拟研究了高温下正庚烷的热解。在原子水平上系统地分析了与热解相关的中间反应、重要产物/中间产物分布以及相应的动力学行为。结果表明,整个热解过程以自由基为主导。正庚烷的分解主要通过均裂途径进行。分解的引发主要是通过 C-C 键的断裂。中心 C-C 键会先于末端 C-C 键发生解离。此外,在原子水平上证明了 Rice-Kossiakoff 理论适用于正庚烷的热解。为了更好地描述热解行为,在反应机制中应考虑一些烷烃相关的分子间反应。从本模拟中提取的表观活化能在 2400-3000 K 的温度范围内为 43.02-54.49 kcal/mol,与实验结果相当吻合。

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