A flow microcalorimeter, model 2277-LKB, has been used to determine excess enthalpies, H(E), at 298.15 K, for liquid mixtures containing ethanenitrile, propanenitrile, butanentrile, or pentanenitrile + benzene or tetrachloromethane. These experimental results together with the literature data on thermodynamic properties of alkanenitrile + benzene or tetrachloromethane mixtures have been interpreted in terms of the dispersive quasi-chemical (DISQUAC) group contribution model. Two sets of structure-dependent interaction parameters, for the nitrile group/aromatic and for the nitrite group/tetrachloromethane contacts, have been obtained. The model provides a fairly consistent description of the excess Gibbs energy, G(E), excess enthalpy, H(E), and of activity coefficients at infinite dilution, gamma(infinity)(i), of the considered mixtures.
Calorimetric study of nitro group/solvent interactions. Comparison with DISQUAC predictions
PORCEDDA, SILVIA;PIRAS, ALESSANDRA
2010-01-01
Abstract
A flow microcalorimeter, model 2277-LKB, has been used to determine excess enthalpies, H(E), at 298.15 K, for liquid mixtures containing ethanenitrile, propanenitrile, butanentrile, or pentanenitrile + benzene or tetrachloromethane. These experimental results together with the literature data on thermodynamic properties of alkanenitrile + benzene or tetrachloromethane mixtures have been interpreted in terms of the dispersive quasi-chemical (DISQUAC) group contribution model. Two sets of structure-dependent interaction parameters, for the nitrile group/aromatic and for the nitrite group/tetrachloromethane contacts, have been obtained. The model provides a fairly consistent description of the excess Gibbs energy, G(E), excess enthalpy, H(E), and of activity coefficients at infinite dilution, gamma(infinity)(i), of the considered mixtures.File | Dimensione | Formato | |
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