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首页> 外文期刊>RSC Advances >Theoretical and kinetic study of the reaction of C2H3 + HO2 on the C2H3O2H potential energy surface
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Theoretical and kinetic study of the reaction of C2H3 + HO2 on the C2H3O2H potential energy surface

机译:C2H3 + HO2对C2H3O2H电位能面反应的理论和动力学研究

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摘要

The potential energy surface (PES) for reaction of C2H3 + HO2 was examined by using high-level quantum chemical methods. Conventional transition state theory (TST) was used to determine the rates where the reaction has a tight transition state; variable reaction coordinate transition-state theory (VRC-TST) was used for rate constant calculations corresponding to the barrierless reactions. And Rice-RamsbergerKassel- Marcus/Master-Equation (RRKM/ME) theory was used to calculate the pressure-dependent rate constants of these channels. The major product channel of the reaction C2H3 + HO2 is the formation of C2H3O2H via a highly vibrationally excited product. Thermochemical properties of the species involved in the reactions were determined using the QCISD(T)/CBS//M062X/6-311++G(d, p) method and enthalpies of formation of species were compared with literature values. The calculated rate constants are in good agreement with limited data from the literature and are given in modified Arrhenius equation form, which are useful in combustion modeling of hydrocarbons. Finally, in order to investigate the effect of the calculated parameters on ignition delay, they were used to simulate ignition delay with the current mainstream mechanism. It is shown that these parameters have improved the mechanism and that the simulation results for ethylene ignition in a shock tube are similar to the observed values.
机译:通过使用高水平量子化学方法检查C2H3 + HO2反应的电位能表面(PE)。传统的过渡状态理论(TST)用于确定反应具有紧张状态的速率;可变反应坐标转换状态理论(VRC-TST)用于对应于无障碍反应的速率恒定计算。和稻米贝尔架公库 - 马库斯/硕士等式(RRKM / ME)理论用于计算这些通道的压力依赖性速率常数。反应C2H3 + HO2的主要产品通道是通过高振动激发的产物形成C 2 H 3 O 2 H。使用QCISD(T)/ CBS // M062X / 6-311 ++ G(D,P)法测定参与反应的物种的热化学性质,并将物种的形成焓与文献值进行比较。计算的速率常数与文献中的有限数据吻合良好,并以改进的Arhenius公式形式给出,可用于碳氢化合物的燃烧建模。最后,为了研究计算的参数对点火延迟的影响,它们用于模拟与电流主流机制的点火延迟。结果表明,这些参数改善了该机制,并且在冲击管中的乙烯点火的模拟结果类似于观察到的值。

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  • 来源
    《RSC Advances》 |2017年第71期|共11页
  • 作者单位

    Guizhou Inst Technol Sch Chem Engn Guiyang 550003 Guizhou Peoples R China;

    Guizhou Inst Technol Sch Chem Engn Guiyang 550003 Guizhou Peoples R China;

    Sichuan Univ Sch Chem Engn Chengdu 610064 Sichuan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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