PREDICTION OF GAS SOLUBILITY IN IONIC LIQUIDS USING THE COSMO-SAC MODEL

被引:14
|
作者
Jaschik, Manfred [1 ]
Piech, Daniel [1 ]
Warmuzinski, Krzysztof [1 ]
Jaschik, Jolanta [1 ]
机构
[1] Polish Acad Sci, Inst Chem Engn, Ul Baltycka 5, Gliwice, Poland
关键词
vapour-liquid equilibrium; ionic liquids; Henry's constant; solubility; carbon dioxide capture; COSMO-SAC model; CO2; CAPTURE; EQUILIBRIA; SYSTEMS; RS;
D O I
10.1515/cpe-2017-0003
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Thermodynamic principles for the dissolution of gases in ionic liquids (ILs) and the COSMO-SAC model are presented. Extensive experimental data of Henry's law constants for CO2, N-2 and O-2 in ionic liquids at temperatures of 280-363 K are compared with numerical predictions to evaluate the accuracy of the COSMO-SAC model. It is found that Henry's law constants for CO2 are predicted with an average relative deviation of 13%. Both numerical predictions and experimental data reveal that the solubility of carbon dioxide in ILs increases with an increase in the molar mass of ionic liquids, and is visibly more affected by the anion than by the cation. The calculations also show that the highest solubilities are obtained for [Tf2N](-). Thus, the model can be regarded as a useful tool for the screening of ILs that offer the most favourable CO2 solubilities. The predictions of the COSMO-SAC model for N-2 and O-2 in ILs differ from the pertinent experimental data. In its present form the COSMO-SAC model is not suitable for the estimation of N-2 and O-2 solubilities in ionic liquids.
引用
收藏
页码:19 / 30
页数:12
相关论文
共 50 条
  • [31] Predicting phase equilibrium for polymer solutions using COSMO-SAC
    Staudt, Paula B.
    Simoes, Renata L.
    Jacques, Leonardo
    Cardozo, Nilo S. M.
    Soares, Rafael de P.
    [J]. FLUID PHASE EQUILIBRIA, 2018, 472 : 75 - 84
  • [32] Group Contribution Prediction of Surface Charge Density Distribution of Molecules for COSMO-SAC
    Mu, Tiancheng
    Rarey, Juergen
    Gmehling, Juergen
    [J]. AICHE JOURNAL, 2009, 55 (12) : 3298 - 3300
  • [33] Improved Directional Hydrogen Bonding Interactions for the Prediction of Activity Coefficients with COSMO-SAC
    Chang, Chun-Kai
    Chen, Wei-Lin
    Wu, David T.
    Lin, Shiang-Tai
    [J]. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2018, 57 (32) : 11229 - 11238
  • [34] Screening of Imidazole Ionic Liquids for Separating the Acetone- n-Hexane Azeotrope by COSMO-SAC Simulations and Experimental Verification
    Wang, Yinglong
    Yang, Xiao
    Bai, Wenting
    Zhang, Jie
    Zhou, Xinran
    Guo, Xiaokai
    Peng, Jincheng
    Qi, Jianguang
    Zhu, Zhaoyou
    [J]. ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2020, 8 (11) : 4440 - 4450
  • [35] Separation of heterocyclic nitrogen compounds from coal tar fractions via ionic liquids: COSMO-SAC screening and experimental study
    Xu, Dongmei
    Zhang, Mi
    Gao, Jun
    Zhang, Lianzheng
    Zhou, Shixue
    Wang, Yinglong
    [J]. CHEMICAL ENGINEERING COMMUNICATIONS, 2019, 206 (09) : 1199 - 1217
  • [36] Enhancement of bio-oil derived chemicals in aqueous phase using ionic liquids: Experimental and COSMO-SAC predictions using a modified hydrogen bonding expression
    Bharti, Anand
    Banerjee, Tamal
    [J]. FLUID PHASE EQUILIBRIA, 2015, 400 : 27 - 37
  • [37] Asphaltenes at the water-oil interface using DPD/COSMO-SAC
    de Oliveira, Fellipe C.
    Maia, Joao M.
    Tavares, Frederico W.
    [J]. COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2021, 625
  • [38] Modeling of thermodynamics properties of amino acid solutions by COSMO-SAC model
    Mahmoudabadi, Samane Zarei
    Pazuki, Gholamreza
    [J]. FLUID PHASE EQUILIBRIA, 2021, 541
  • [39] Prediction of Phase Behaviors of Polymer-Solvent Mixtures from the COSMO-SAC Activity Coefficient Model
    Kuo, Yu-Ching
    Hsu, Chan-Chia
    Lin, Shiang-Tai
    [J]. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2013, 52 (37) : 13505 - 13515
  • [40] Response to Comment on "Prediction of Soil Sorption Coefficients Using Model Molecular Structures for Organic Matter and the Quantum Mechanical COSMO-SAC Model"
    Phillips, Kathy L.
    Di Toro, Dominic M.
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2013, 47 (12) : 6713 - 6714