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Issue 7, 2001
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Equilibrium and out-of-equilibrium (hysteretic) behavior of fluids in disordered porous materials: Theoretical predictions

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Abstract

We study the relation between out-of-equilibrium (hysteretic) and equilibrium behavior in the capillary condensation of fluids in disordered mesoporous solids. Using mean-field density functional theory, we show that a simple lattice-gas model can reproduce the major experimental observations and that the classical van der Waals picture of metastability fails due the appearance of many metastable states. We find that (i) a true equilibrium capillary phase transition may occur when the perturbation induced by the solid is sufficiently small; (ii) hysteresis does not necessarily imply the existence of this phase transition; (iii) the disappearance of the hysteresis loop is not associated with capillary criticality; and (iv) thermodynamic consistency is violated along the adsorption–desorption isotherms.

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Publication details

The article was received on 26 Oct 2000, accepted on 19 Jan 2001 and first published on 02 Mar 2001


Article type: Paper
DOI: 10.1039/B008636N
Citation: Phys. Chem. Chem. Phys., 2001,3, 1201-1206
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    Equilibrium and out-of-equilibrium (hysteretic) behavior of fluids in disordered porous materials: Theoretical predictions

    E. Kierlik, M. L. Rosinberg, G. Tarjus and P. Viot, Phys. Chem. Chem. Phys., 2001, 3, 1201
    DOI: 10.1039/B008636N

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