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A New Approach to Describe High-Pressure Adsorption Isotherms in Subcritical and Supercritical Conditions

机译:描述亚临界和超临界条件下高压吸附等温线的新方法

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In this article, we present a new approach to describe adsorption equilibrium of pure gases in a wide range of pressure. This approach is based on a simple statistical mechanics treatment combining the potential theory and lattice fluid models. The obtained equation for the calculation of the excess adsorption can predict the curve progression of isotherms defined by the IUPAC I classification, and for those at supercritical conditions. Notwithstanding that the basic idea of the developed equation is to adapt to the adsorption equilibrium in supercritical conditions at high pressure, the model correlates very well experimental data at low pressure in subcritical conditions. It is applicable to a wide range of pressures and fits satisfactorily the experimental data in a broad range of pressures and temperatures. In particular, the model predicts the maximum of excess adsorption and its minimum. A comparison between this approach and two others is given.
机译:在本文中,我们提出了一种描述宽压力范围内纯气体吸附平衡的新方法。该方法基于简单的统计力学处理,结合了势能理论和晶格流体模型。所获得的用于计算过量吸附的方程式可以预测IUPAC I分类定义的等温线的曲线进展,以及超临界条件下的等温线的曲线进展。尽管所开发方程的基本思想是要适应高压在超临界条件下的吸附平衡,但是该模型很好地关联了亚临界条件下在低压下的实验数据。它适用于各种压力,并且可以在各种压力和温度下令人满意地拟合实验数据。特别地,该模型预测过量吸附的最大值和最小值。对此方法与其他两种方法进行了比较。

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