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首页> 外文期刊>Journal of Colloid and Interface Science >Analysis of adsorption isotherms: Lattice theory predictions, classification of isotherms for gas-solid equilibria, and similarities in gas and liquid adsorption behavior
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Analysis of adsorption isotherms: Lattice theory predictions, classification of isotherms for gas-solid equilibria, and similarities in gas and liquid adsorption behavior

机译:吸附等温线分析:晶格理论预测,气固平衡等温线分类以及气体和液体吸附行为的相似性

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Adsorption at fluid-solid interfaces is considered in the framework of a lattice with boundaries. Using ideas proposed by S. Ono and S. Kondo (in "Molecular Theory of Surface Tension in Liquids" (S. Flugge, Ed.), Encyclopedia of Physics, Vol. IO, p. 134. Springer-Verlag, Berlin, 1960), a lattice model is derived, both rigorously and phenomenologically, and applied to macro-, meso-, and microporous adsorbents by imposing different boundary conditions. It is shown that this lattice theory can predict the entire spectrum of behavior observed when gases, liquids, or supercritical fluids adsorb on solid surfaces. In particular, it is able to predict steps in the isotherms, scaling behavior near saturation conditions, supercritical behavior, and adsorption hysteresis. It is shown that there is a profound analogy in the adsorption behavior of a one-component gas to that of a binary liquid mixture. This analysis leads to a new classification of physisorption isotherms for fluid/solid equilibria. (C) 1998 Academic Press. [References: 53]
机译:在具有边界的晶格的框架内考虑了在流固界面的吸附。使用S. Ono和S. Kondo提出的思想(在“液体中表面张力的分子理论”(S. Flugge,编辑)中,《物理学百科全书》,第IO卷,第134页。Springer-Verlag,柏林,1960年) ),严格和现象学地推导了晶格模型,并通过施加不同的边界条件将其应用于大,中和微孔吸附剂。结果表明,这种晶格理论可以预测当气体,液体或超临界流体吸附在固体表面上时观察到的整个行为谱。特别是,它能够预测等温线中的阶跃,饱和条件附近的结垢行为,超临界行为以及吸附滞后。结果表明,单组分气体的吸附行为与二元液体混合物的吸附行为有很深的类比。该分析导致了流体/固体平衡的物理吸附等温线的新分类。 (C)1998年学术出版社。 [参考:53]

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