首页> 外文期刊>Russian journal of physical chemistry, B. >Simulation of the Oxygen Dissociation Reaction under Thermally Nonequilibrium Conditions: Models, Trajectory Calculations, and the Experiment
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Simulation of the Oxygen Dissociation Reaction under Thermally Nonequilibrium Conditions: Models, Trajectory Calculations, and the Experiment

机译:在热非平衡条件下仿真氧解离反应:模型,轨迹计算和实验

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摘要

The aim of this work was to perform a comparative study of the well-known models of physicochemical processes based on the dissociation of oxygen as an example. The comparison was conducted with the use of the available results of calculations obtained by a method of quasi-classical trajectories. The principle of the information provision of models and the complexity of their computational implementation were taken into account in the study. The dissociation process was considered in the framework of one-temperature, two-temperature, and level approximations. The MD Trajectory software was used for the simulation of molecular reaction dynamics. Computer experiments with theoretical models were carried out using an Internet catalog of physical and chemical process models. A modification of the Marrone–Treanor level model was proposed for the approximation of the rate constant of oxygen dissociation obtained by the method of quasi-classical trajectories in the level approximation. The empirical parameter of this model was replaced by a new parameter, which took into account its possible dependence on translational temperature. For a two-temperature approximation, recommendations were formulated in terms of the applicability ranges of the models taking into account the vibrational temperature of dissociating molecules based on a comparison of the results of trajectory calculations and theoretical models. The results of trajectory calculations and theoretical models in a two-temperature approximation were also compared with the available experimental data on the dissociation of oxygen molecules.
机译:这项工作的目的是基于氧的解离,对众所周知的物理化学方法进行比较研究作为氧的解离。通过使用通过准古典轨迹的方法获得的可用结果进行比较。在研究中考虑了信息提供的信息提供的原则和其计算实施的复杂性。在一次温度,两个温度和水平近似的框架中考虑解离过程。 MD轨迹软件用于模拟分子反应动力学。使用物理和化学过程模型的互联网目录进行了理论模型的计算机实验。提出了一种修改后微型水平模型的近似值通过水平近似的准经典轨迹方法获得的氧解离的速率常数。该模型的经验参数被一个新参数所取代,该参数考虑了可能依赖性的平移温度。对于两个温度近似,根据模型的适用性范围,考虑到分解分子的振动温度,根据轨迹计算和理论模型的结果的比较来制定建议。还将轨迹计算的结果与双温近似的理论模型与氧分子解离的可用实验数据进行比较。

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