1975AIChE JournalRequires access

Group‐contribution estimation of activity coefficients in nonideal liquid mixtures

Aage Fredenslund, Russell L. Jones, John M. Prausnitz

Open publisher page 3,311 citations

Abstract

Abstract A group‐contribution method is presented for the prediction of activity coefficients in nonelectrolyte liquid mixtures. The method combines the solution‐of‐functional‐groups concept with a model for activity coefficients based on an extension of the quasi chemical theory of liquid mixtures (UNIQUAC). The resulting UNIFAC model ( UNI QUAC F unctional‐group A ctivity C oefficients) contains two adjustable parameters per pair of functional groups. By using group‐interaction parameters obtained from data reduction, activity coefficients in a large number of binary and multicomponent mixtures may be predicted, often with good accuracy. This is demonstrated for mixtures containing water, hydrocarbons, alcohols, chlorides, nitriles, ketones, amines, and other organic fluids in the temperature range 275° to 400°K.

About this research paper

What this paper is about

Abstract A group‐contribution method is presented for the prediction of activity coefficients in nonelectrolyte liquid mixtures. The method combines the solution‐of‐functional‐groups concept with a model for activity coefficients based on an extension of the quasi chemical theory of liquid mixtures (UNIQUAC). The resulting UNIFAC model ( UNI QUAC F unctional‐group A ctivity C oefficients) contains two adjustable parameters per pair of functional groups. By using group‐interaction parameters obtained from data reduction, activity coefficients in a large number of binary and multicomponent mixtures may be predicted, often with good accuracy. This is demonstrated for mixtures containing water, hydrocarbons, alcohols, chlorides, nitriles, ketones, amines, and other organic fluids in the temperature range 275° to 400°K.

Why it matters

OpenAlex reports 3311 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Abstract A group‐contribution method is presented for the prediction of activity coefficients in nonelectrolyte liquid mixtures. The method combines the solution‐of‐functional‐groups concept with a model for activity coefficients based on an extension of the quasi chemical theory of liquid mixtures (UNIQUAC). The resulting UNIFAC model ( UNI QUAC F unctional‐group A ctivity C oefficients) contains two adjustable parameters per pair of functional groups. By using group‐interaction parameters obtained from data reduction, activity coefficients in a large number of binary and multicomponent mixtures may be predicted, often with good accuracy. This is demonstrated for mixtures containing water, hydrocarbons, alcohols, chlorides, nitriles, ketones, amines, and other organic fluids in the temperature range 275° to 400°K.

Key concepts: UNIFAC, UNIQUAC, Activity coefficient, Group contribution method, Chemistry, Thermodynamics, Group (periodic table), Binary number

Related papers

Back to paper searchBrowse research topicsOriginal source
Group‐contribution estimation of activity coefficients in nonideal liquid mixtures — Research Paper | ScholarLens