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The viscosity of liquid mixtures

AIChE Journal · 1960 · Vol. 6(3) · pp. 427–431

Abstract

Abstract The theory of viscosity of liquid mixtures presented here is based on Eyring's theory of absolute reaction rates. The most important conclusions drawn are that for liquids the free energies of activation for viscosity are additive on a number fraction or mole fraction basis and that interactions of like and unlike molecules must be considered. Methanol‐toluene, benzene‐toluene, and cyclohexane‐heptane systems were analyzed with a three‐body model and found to fit within the accuracy of the experimental data. Acetone‐water mixtures fit a four‐body interaction much better. Indications are that to describe acetone‐water mixtures well would require consideration of seven‐ or eight‐body interactions.

Spectroscopy and Quantum Chemical StudiesThermodynamic properties of mixturesMaterial Dynamics and PropertiesCyclohexaneTolueneViscosityHeptaneBenzeneChemistryAcetoneMole fractionThermodynamicsMass fraction
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730
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6
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References
Molecular theory of gases and liquids
Journal of Chemical Education · 1955 · 3,938 citations
The properties of gases and liquids
Journal of Chemical Education · 1959 · 2,777 citations
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