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On the use of the dual process Langmuir model for predicting unary and binary isosteric heats of adsorption

机译:关于使用双过程Langmuir模型预测一元和二元等规吸附热

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摘要

Analytic expressions for unary and binary isosteric heats of adsorption as a function of the adsorbed phase loading were derived from the dual process Langmuir (DPL) model using the Clausius-Clapeyron equation. Unary isosteric heats of adsorption predicted from these expressions for several adsorbate-adsorbent systems were compared to values in the literature predicted from the well-accepted graphical approach using Toth and unilan models (Adsorption Equilibrium Data Handbook; Prentice Hall: NJ, 1989). Predictions from the DPL model were also compared to rare experimental unary and binary isosteric heats of adsorption in the literature for another adsorbate-adsorbent system. In all cases, very good agreement was obtained, showing that the DPL model can be used in adsorption process modeling for accurately predicting not only ideal and nonideal mixed-gas adsorption equilibria (Langmuir2011, 27, 4700), but also unary and even binary isosteric heats of adsorption.
机译:使用Clausius-Clapeyron方程,从双过程Langmuir(DPL)模型推导了一元和二元等规吸附热与吸附相负荷的关系的解析表达式。根据这些表达式预测的几种吸附物-吸附剂系统的一元等排吸附热,与使用Toth和unilan模型(吸附平衡数据手册; Prentice Hall:NJ,1989)从公认的图解方法预测的文献中的值进行了比较。 DPL模型的预测结果还与文献中另一种吸附物-吸附剂系统的稀有实验一元和二元等规吸附热进行了比较。在所有情况下,都获得了很好的一致性,表明DPL模型可用于吸附过程建模,不仅可以准确预测理想和非理想混合气体吸附平衡(Langmuir2011,27,4700),而且还可以一元甚至二元等排吸附热。

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