Henry's law, surface tension, and surface adsorption in dilute binary mixtures
arXiv:0902.1204 · doi:10.1063/1.3089709
Abstract
Equilibrium properties of dilute binary fluid mixtures are studied in two-phase states on the basis of a Helmholtz free energy including the gradient free energy. The solute partitioning between gas and liquid (Henry's law) and the surface tension change are discussed. A derivation of the Gibbs law is given with being the surface adsorption. Calculated quantities include the derivatives and of the critical temperature and pressure with respect to the solute molar fraction and the temperature-derivative $(\p γ/\p T)_{{\rm cx},p}$ of the surface tension at fixed pressure on the coexistence surface. Here $(\p γ/\p T)_{{\rm cx},p}$ can be both positive and negative, depending on the solute molecular size and the solute-solvent interaction,and diverges on the azeptropic line. Explicit expressions are given for all these quantities in the van der Waals model.
12 pages, 7 figures. to be published in Journal of Chemical Physics