Derivation of an infinite-dilution activity coefficient model and application to two-component vapor-liquid equilibria data
Date
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract
Infinite-dilution fugacity coefficients were obtained for the binary system fluorene/phenanthrene at thirteen temperatures by fitting total pressure across the entire mole fraction range by a computer routine. A thermodynamically consistent routine, that allowed for both positive and negative pressure derivations from the ideal values, was used to correlate data over the full mole fraction range from 0 to 1. The four-suffix Margules activity coefficient model without modification essentially served this purpose since total pressures and total pressure derivatives with respect to mole fraction were negligible compared to pressure measurement precision.
The water/ethanol system studied by Kolbe and Gmehling and binary systems studied by Maher, Srivastava and Smith comprised of aniline, chlorobenzene, acetonitrile and other polar compounds were fit for total pressure across the entire mole fraction range for binary Vapor-Liquid-Equilibria (VLE) using the rigorous, thermodynamically consistent expression derived by Ibl and Dodge from the Gibbs-Duhen Relation. Data correlation was performed using a computer least squares procedure. Infinite-dilution fugacity coefficients were obtained using a modified Margules activity coefficient model which gives residual values of x
Description
Advisor
Degree
Type
Keywords
Citation
Roper, Vaughan Phillip. "Derivation of an infinite-dilution activity coefficient model and application to two-component vapor-liquid equilibria data." (1988) Diss., Rice University. https://hdl.handle.net/1911/16182.