Literature DB >> 23237103

Selection of ionic liquids for enhancing the gas solubility of volatile organic compounds.

Maria Gonzalez-Miquel1, Jose Palomar, Francisco Rodriguez.   

Abstract

A systematic thermodynamic analysis has been carried out for selecting cations and anions to enhance the absorption of volatile organic compounds (VOCs) at low concentration in gaseous streams by ionic liquids (ILs), using COSMO-RS methodology. The predictability of computational procedure was validated by comparing experimental and COSMO-RS calculated Henry's law constant data over a sample of 125 gaseous solute-IL systems. For more than 2400 solute-IL mixtures evaluated, including 9 solutes and 270 ILs, it was found that the lower the activity coefficient at infinite dilution (γ(∞)) of solutes in the ILs, the more the exothermic excess enthalpy (H(E)) of the equimolar IL-solute mixtures. Then, the solubility of a representative sample of VOC solutes, with very different chemical nature, was screened in a wide number of ILs using COSMO-RS methodology by means of γ(∞) and H(E) parameters, establishing criteria to select the IL structures that promote favorable solute-solvent intermolecular interactions. As a result of this analysis, an attempt of classification of VOCs respect to their potential solubility in ILs was proposed, providing insights to rationally select the cationic and anionic species for a possible development of absorption treatments of VOC pollutants based on IL systems.

Year:  2012        PMID: 23237103     DOI: 10.1021/jp310499p

Source DB:  PubMed          Journal:  J Phys Chem B        ISSN: 1520-5207            Impact factor:   2.991


  2 in total

1.  Design of Ionic Liquids for Fluorinated Gas Absorption: COSMO-RS Selection and Solubility Experiments.

Authors:  Julio E Sosa; Rubén Santiago; Andres E Redondo; Jocasta Avila; Luiz F Lepre; Margarida Costa Gomes; João M M Araújo; José Palomar; Ana B Pereiro
Journal:  Environ Sci Technol       Date:  2022-04-18       Impact factor: 11.357

2.  Tackling Humidity with Designer Ionic Liquid-Based Gas Sensing Soft Materials.

Authors:  Carina Esteves; Susana I C J Palma; Henrique M A Costa; Cláudia Alves; Gonçalo M C Santos; Efthymia Ramou; Ana Luísa Carvalho; Vitor Alves; Ana C A Roque
Journal:  Adv Mater       Date:  2022-01-09       Impact factor: 32.086

  2 in total

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