Modeling phase behavior for quantifying micro-pervaporation experiments

Authors: Michael Schindler, Armand Ajdari

Eur. Phys. J. E 28, 27-45 (2009)
arXiv: 0812.1166v1 - DOI (cond-mat.soft)
to be published in EPJ-E

Abstract: We present a theoretical model for the evolution of mixture concentrations in a micro-pervaporation device, similar to those recently presented experimentally. The described device makes use of the pervaporation of water through a thin PDMS membrane to build up a solute concentration profile inside a long microfluidic channel. We simplify the evolution of this profile in binary mixtures to a one-dimensional model which comprises two concentration-dependent coefficients. The model then provides a link between directly accessible experimental observations, such as the widths of dense phases or their growth velocity, and the underlying chemical potentials and phenomenological coefficients. It shall thus be useful for quantifying the thermodynamic and dynamic properties of dilute and dense binary mixtures.

Submitted to arXiv on 05 Dec. 2008

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