4.5 Article

Modeling of Dielectric Properties of Complex Fluids with an Equation of State

期刊

JOURNAL OF PHYSICAL CHEMISTRY B
卷 117, 期 12, 页码 3389-3397

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AMER CHEMICAL SOC
DOI: 10.1021/jp310572q

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  1. Technical University of Denmark
  2. CHIGP project joint industry consortium

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The static permittivity is a key property for describing solutions containing polar and hydrogen bonding compounds. However, the precise relationship between the molecular and dielectric properties is not well-established. Here we show that the relative permittivity at zero frequency (static permittivity) can be modeled simultaneously with thermodynamic properties. The static permittivity is calculated from an extension of the framework developed by Onsager, Kirkwood, and Frohlich to associating mixtures. The thermodynamic properties are calculated from the cubic-plus-association (CPA) equation of state that includes the Wertheim association model as formulated in the statistical associating fluid theory (SAFT) to account for hydrogen bonding molecules. We show that, by using a simple description of the geometry of the association, we may calculate the Kirkwood g-factor as a function of the probability of hydrogen bond formation. The results show that it is possible to predict the static permittivity of complex mixtures over wide temperature and pressure ranges from simple extensions of well-established theories simultaneously with the calculation of thermodynamic properties.

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