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Cross second virial coefficients and dilute gas transport properties of the (CH4 + CO2), (CH4 + H2S), and (H2S + CO2) systems from accurate intermolecular potential energy surfaces

机译:准确的分子间势能面交叉第二维里系数和(CH4 + CO2),(CH4 + H2s)和(H2s + CO2)系统的稀释气体传输特性

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摘要

The cross second virial coefficient and the dilute gas shear viscosity, thermal conductivity, and binary diffusion coefficient have been calculated for (CH4 + CO2), (CH4 + H2S), and (H2S + CO2) mixtures in the temperature range from (150 to 1200) K. The cross second virial coefficient was obtained using the Mayer-sampling Monte Carlo approach, while the transport properties were evaluated by means of the classical trajectory method. State-of-the-art intermolecular potential energy surfaces for the like and unlike species interactions were employed in the calculations. All potential energy surfaces are based on highly accurate quantum-chemical ab initio calculations, with the potentials for the unlike interactions reported in this work and those for the like interactions taken from our previous studies of the pure gases. The computed transport property values are in good agreement with the few available experimental data, which are limited to (CH4 + CO2) mixtures close to room temperature. The lack of reliable data makes the values of the thermophysical properties calculated in this work currently the most accurate estimates for low-density (CH4 + CO2), (CH4 + H2S), and (H2S + CO2) mixtures. Tables of recommended values for all investigated thermophysical properties as a function of temperature and composition are provided.
机译:已计算出(CH4 + CO2),(CH4 + H2S)和(H2S + CO2)混合物在(150-150°F)温度范围内的交叉第二维里系数和稀气体剪切粘度,热导率和二元扩散系数1200)K.交叉第二维里系数是使用Mayer采样蒙特卡罗方法获得的,而传输特性是通过经典轨迹法进行评估的。在计算中使用了类似物质和与物种相互作用不同的最新分子间势能表面。所有势能面均基于高度精确的量子化学从头算计算,并且该工作中报道的互不相同的相互作用和我们以前对纯净气体的研究都具有相似的相互作用。计算出的传输性能值与少量可用的实验数据非常吻合,这些数据仅限于接近室温的(CH4 + CO2)混合物。缺乏可靠的数据使得当前在这项工作中计算出的热物理性质的值成为对低密度(CH4 + CO2),(CH4 + H2S)和(H2S + CO2)混合物的最准确估算。提供了所有调查的热物理性质随温度和成分变化的推荐值表。

著录项

  • 作者

    Hellmann, R; Bich, E; Vesovic, V;

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  • 年度 2016
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  • 入库时间 2022-08-20 21:06:52

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