2018
DOI: 10.1021/acs.iecr.8b04870
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A United Chemical Thermodynamic Model: COSMO-UNIFAC

Abstract: A united chemical thermodynamic model, that is, the COSMO-UNIFAC model, was first proposed to predict the phase equilibrium of multicomponent systems in which the UNIFAC model parameters are missing. This model combines the advantages of the UNIFAC model (accurate prediction) and the COSMO-based models (a priori prediction). The predicted vapor−liquid equilibrium results by the COSMO-UNIFAC model were compared with experimental data from the literature and this work, confirming that it can provide a moderate q… Show more

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Cited by 49 publications
(42 citation statements)
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“…The insufficient experimental data for such IL‐solute systems will lead to a large number of missing interaction parameters in the UNIFAC‐IL parameter matrix that can be extended. In order to fill in the missing UNIFAC‐IL parameters, reliable computational predictions could also be used as supplements to experimental data . In this regard, the COSMO‐based models such as COSMO‐RS offer great potential since their activity coefficient predictions are totally independent of experiments .…”
Section: Introductionmentioning
confidence: 99%
“…The insufficient experimental data for such IL‐solute systems will lead to a large number of missing interaction parameters in the UNIFAC‐IL parameter matrix that can be extended. In order to fill in the missing UNIFAC‐IL parameters, reliable computational predictions could also be used as supplements to experimental data . In this regard, the COSMO‐based models such as COSMO‐RS offer great potential since their activity coefficient predictions are totally independent of experiments .…”
Section: Introductionmentioning
confidence: 99%
“…In this AIChE Letter , we proposed a united chemical thermodynamic model, that is, COSMO‐UNIFAC model, which first extends the combination of GCMs and COSMO‐based models to ILs. The characteristics of this model is that it keeps the original UNIFAC model equations and model parameters unchanged through fitting the infinite dilution activity coefficient ( γ ∞ ) calculated by COSMO‐SAC model to get the vacant UNIFAC binary group parameters for ILs.…”
Section: Introductionmentioning
confidence: 99%
“…The activity coefficient γ i is divided into two parts γ i (c) represents the combined part activity coefficient and γ i (R) stands for the residual part activity coefficient, which can be figured out according to the corresponding parameters. 28 And the corresponding parameters are listed in Tables S1 and S2 . The calculation results of the activity coefficient and equilibrium constant are shown in Table 1 .…”
Section: Resultsmentioning
confidence: 99%