JOURNAL OF CHEMICAL ENGINEERING OF JAPAN
Online ISSN : 1881-1299
Print ISSN : 0021-9592
Physical Properties and Physical Chemistry
Determination of Isobaric Vapor–Liquid Equilibria Data for Four Alcohol+Water Binary Systems at Low Alcohol Mole Fractions 10−6 to 10−2
Hiroyuki MatsudaMasahiko ItoKiyofumi KuriharaKatsumi Tochigi
Author information
JOURNAL RESTRICTED ACCESS

2022 Volume 55 Issue 2 Pages 77-83

Details
Abstract

Information on vapor–liquid equilibria in the extremely dilute regions is necessary for developing high-grade purification processes. In this study, we examine the vapor–liquid equilibria (xyTP) of liquids containing 1×10−6 to 1×10−2 mole fractions of alcohols for four binary systems, i.e., methanol+water, ethanol+water, 2-propanol+water, and 2-methyl-2-propanol+water, at 101.325 kPa using two Rose–Williams stills with a special device for a sampling system. The infinite-dilution equilibrium ratios K1 were measured, and the infinite-dilution activity coefficients obtained from K1 were compared with the literature and predicted values using modified UNIFAC (Dortmund) and ASOG. The xyTP data at the finite composition regions were then calculated using Wilson parameters obtained by the infinite-dilution activity coefficients.

Content from these authors
© 2022 The Society of Chemical Engineers, Japan
Previous article Next article
feedback
Top