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Reactive vacancy solution theory for correlation and prediction of adsorption equilibria for physical and chemical adsorptions

机译:反应空位溶液理论用于物理和化学吸附的吸附平衡的相关性和预测

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摘要

An isotherm equation was developed in the framework of the vacancy solution theory. In the model, vacancies in the adsorbed phase are dealt with as a kind of reactive entity, which leads to more flexible adsorption isotherm equations. The model can be called as reactive vacancy solution theory (RVST). Practical RVST equations for single-component and binary-component adsorption systems were derived by using Wilson, NRTL and UNIQUAC equations for activity coefficients. The RVST equations were found to coincide with the Lang-muir-Freundlich equation when the effect of activity coefficients is assumed to be negligible. Furthermore, it was also found that the RVST model conforms to several simple-theoretical or empirical isotherm equations when the model is simplified. Therefore, it can be stated that the reactive vacancy solution theory can be regarded as more universal and general mathematical description of adsorption equilibria. Validity of the RVST equations for single-component adsorption was tested. The results reveal that the RVST-W and RVST-N equations can appropriately correlate non-ideal adsorption equilibrium data.
机译:在空位求解理论的框架内建立了一个等温方程。该模型将吸附相中的空位作为一种反应性实体进行处理,从而使吸附等温线方程更加灵活。该模型可以称为反应性空缺解决方案理论(RVST)。利用Wilson,NRTL和UNIQUAC活度系数方程,得出了单组分和二组分吸附系统的实用RVST方程。当活度系数的影响可忽略不计时,发现RVST方程与Lang-muir-Freundlich方程一致。此外,还发现在简化模型时,RVST模型符合几个简单理论或经验等温方程。因此,可以说反应空位溶液理论可以看作是吸附平衡的更通用和更一般的数学描述。测试了RVST方程对于单组分吸附的有效性。结果表明,RVST-W和RVST-N方程可以适当地关联非理想吸附平衡数据。

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