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Theoretical study of the kinetics of reactions of the monohalogenated methanes with atomic chlorine

机译:单卤甲烷与原子氯反应动力学的理论研究

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摘要

Ab initio calculations at the G2 level were used in a theoretical description of the kinetics and mechanism of the hydrogen abstraction reactions from fluoro-, chloro- and bromomethane by chlorine atoms. The profiles of the potential energy surfaces show that mechanism of the reactions under investigation is complex and consists of two - in the case of CH3F+Cl - and of three elementary steps for CH3Cl+Cl and CH3Br+Cl. The heights of the energy barrier related to the H-abstraction are of 8–10 kJ mol−1, the lowest value corresponds to CH3Cl+Cl and the highest one to CH3F+Cl. The rate constants were calculated using the theoretical method based on the RRKM theory and the simplified version of the statistical adiabatic channel model. The kinetic equations derived in this studyandallow a description of the kinetics of the reactions under investigation in the temperature range of 200–3000 K. The kinetics of reactions of the entirely deuterated reactants were also included in the kinetic analysis. Results of ab initio calculations show that D-abstraction process is related with the energy barrier of 5 kJ mol−1 higher than the H-abstraction from the corresponding non-deuterated reactant molecule. The derived analytical equations for the reactions, CD3X+Cl, CH2X+HCl and CD2X+DCl (X = F, Cl and Br) are a substantial supplement of the kinetic data necessary for the description and modeling of the processes of importance in the atmospheric chemistry.
机译:在理论上描述了从G2级别进行的从头算的计算,该理论描述了氯原子从氟,氯和溴甲烷中提取氢的动力学和机理。势能面的分布表明,所研究反应的机理很复杂,由CH3F + Cl组成的两个-和CH3Cl + Cl和CH3Br + Cl的三个基本步骤组成。与H吸收有关的能垒高度为8–10 kJ mol -1 ,最低值对应于CH3Cl + Cl,最高值对应于CH3F + Cl。使用基于RRKM理论的理论方法和统计绝热通道模型的简化版本来计算速率常数。本研究得出的动力学方程式可以描述在200–3000 K的温度范围内所研究的反应动力学。动力学分析还包括完全氘化的反应物的反应动力学。从头算的结果表明,与相应的非氘代反应物分子相比,D的吸收过程与H的吸收能级高5 kJ mol -1 有关。推导的反应分析方程CD3X + Cl,CH2X + HCl和CD2X + DCl(X = F,Cl和Br)是对描述和模拟大气中重要过程所必需的动力学数据的重要补充化学。

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