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Elsevier, Journal of Chromatography A, 1(910), p. 119-125

DOI: 10.1016/s0021-9673(00)01120-1

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Modified mass action law-based model to correlate the solubility of solids and liquids in entrained supercritical carbon dioxide

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This paper is available in a repository.

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Abstract

The solubility of solids and liquids in supercritical CO2 with added entrainers was modeled with a modified version of the equation of Chrastil to include the effect of entrainers. By considering the formation of the solute-entrainer-solvent complexes an equation is obtained which predicts an exponential increase of solubility with fluid density and/or entrainer concentration. The correlating model was tested by non-linear regression through a computerized iterative process for several systems where an entrainer was present. Four experimental parameters are easily regressed from experimental data, hence the corresponding properties of components such as chemical potentials or critical parameters are not needed. Instead of its simplicity, this thermodynamical model provided a good correlation of the solubility enhancement in the presence of entrainer effect.