Numerical simulation of temperature-programmed reaction data: an application in surface chemical kinetics

G. Ellis, J. Sidaway, M. McCoustra
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引用次数: 5

Abstract

The application of numerical simulations of temperature-programmed reaction and desorption (TPRD) spectra as a means of supporting mechanistic studies of surface reactions is demonstrated through two simple examples: the chemistry of ethene hydrogenation and the chemistry of methyl moieties co-adsorbed with hydrogen atoms. Where possible, literature kinetic parameters have been employed in the simulations. Where no parameters exist, preliminary estimates of the kinetic parameters were systematically modified until a visual agreement between the empirical TPRD spectra and the numerical simulations was obtained. In this way, these simulations have permitted a preliminary determination of the activation energies and pre-exponential factors for a number of the reaction steps in the chemistry of co-adsorbed methyl moieties and hydrogen atoms.
程控温度反应数据的数值模拟:在表面化学动力学中的应用
通过两个简单的例子:乙烯加氢化学和甲基部分与氢原子共吸附的化学,说明了将程序升温反应与解吸光谱(TPRD)数值模拟作为支持表面反应机理研究手段的应用。在可能的情况下,文献动力学参数已被用于模拟。在没有参数存在的情况下,系统地修改动力学参数的初步估计,直到获得经验TPRD光谱与数值模拟之间的视觉一致性。通过这种方法,这些模拟可以初步确定共吸附甲基部分和氢原子的化学反应步骤的活化能和指前因子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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