Influence of temperature on thermodynamics for binary mixtures of short aliphatic protic ionic liquids

Two binary mixtures of protic ionic liquids comprising formate, acetate and propionate anions and 2-hydroxyethyl ammonium, bis(2-hydroxyethyl) ammonium and tris(2-hydroxyethyl) ammonium cations have been studied in terms of volumetric and acoustic properties as a function of temperature. The corresp...

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Main Authors: Andrade Rebecca S., Carreras Alberto, Iglesias Miguel
Format: Article
Language:English
Published: Serbian Chemical Society 2017-01-01
Series:Journal of the Serbian Chemical Society
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0352-5139/2017/0352-51391700068A.pdf
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spelling doaj-11ced960237b4d7a92a4bf20fcf8bbb82020-11-24T23:50:09ZengSerbian Chemical Society Journal of the Serbian Chemical Society0352-51391820-74212017-01-0182101155117410.2298/JSC160821068A0352-51391700068AInfluence of temperature on thermodynamics for binary mixtures of short aliphatic protic ionic liquidsAndrade Rebecca S.0Carreras Alberto1Iglesias Miguel2Universidade Federal da Bahia, Escola Politécnica, Departamento de Engenharia Química, Salvador, Brasil + Universidade Salvador, Departamento de Engenharia Química, Salvador, BrasilUniversidade Federal da Bahia, Escola Politécnica, Departamento de Engenharia Química, Salvador, BrasilUniversidade Federal da Bahia, Escola Politécnica, Departamento de Engenharia Química, Salvador, BrasilTwo binary mixtures of protic ionic liquids comprising formate, acetate and propionate anions and 2-hydroxyethyl ammonium, bis(2-hydroxyethyl) ammonium and tris(2-hydroxyethyl) ammonium cations have been studied in terms of volumetric and acoustic properties as a function of temperature. The corresponding derived properties have been computed from the experimental data and fitted to temperature dependent Redlich–Kister and Redlich– –Mayer equations; accurate results being obtained. Other properties such as intermolecular free length, acoustic impedance, geometrical volume, collision factor and isothermal coefficient of pressure excess molar enthalpy were computed due to their importance in the study of specific molecular interactions. The new experimental data were used to test the prediction capability of different models for density (Mchaweh–Nasrifar–Moshfeghian (MNM) model and the modified Heller temperature dependent equation (MHE)) and ultrasonic velocity (different empirical equations, collision factor theory (CFT) and free length theory (FLT)). The high non-ideality of these mixtures points to strong contractive behaviour at any temperature and composition. The obtained results indicate that ionic liquid interactions into mixture are stronger than in the ionic pure components for both mixtures at any studied condition. Despite the strong ion interaction, the tested models showed, at least, the qualitative prediction capability.http://www.doiserbia.nb.rs/img/doi/0352-5139/2017/0352-51391700068A.pdfderived propertiesbinary mixturestheoretical models
collection DOAJ
language English
format Article
sources DOAJ
author Andrade Rebecca S.
Carreras Alberto
Iglesias Miguel
spellingShingle Andrade Rebecca S.
Carreras Alberto
Iglesias Miguel
Influence of temperature on thermodynamics for binary mixtures of short aliphatic protic ionic liquids
Journal of the Serbian Chemical Society
derived properties
binary mixtures
theoretical models
author_facet Andrade Rebecca S.
Carreras Alberto
Iglesias Miguel
author_sort Andrade Rebecca S.
title Influence of temperature on thermodynamics for binary mixtures of short aliphatic protic ionic liquids
title_short Influence of temperature on thermodynamics for binary mixtures of short aliphatic protic ionic liquids
title_full Influence of temperature on thermodynamics for binary mixtures of short aliphatic protic ionic liquids
title_fullStr Influence of temperature on thermodynamics for binary mixtures of short aliphatic protic ionic liquids
title_full_unstemmed Influence of temperature on thermodynamics for binary mixtures of short aliphatic protic ionic liquids
title_sort influence of temperature on thermodynamics for binary mixtures of short aliphatic protic ionic liquids
publisher Serbian Chemical Society
series Journal of the Serbian Chemical Society
issn 0352-5139
1820-7421
publishDate 2017-01-01
description Two binary mixtures of protic ionic liquids comprising formate, acetate and propionate anions and 2-hydroxyethyl ammonium, bis(2-hydroxyethyl) ammonium and tris(2-hydroxyethyl) ammonium cations have been studied in terms of volumetric and acoustic properties as a function of temperature. The corresponding derived properties have been computed from the experimental data and fitted to temperature dependent Redlich–Kister and Redlich– –Mayer equations; accurate results being obtained. Other properties such as intermolecular free length, acoustic impedance, geometrical volume, collision factor and isothermal coefficient of pressure excess molar enthalpy were computed due to their importance in the study of specific molecular interactions. The new experimental data were used to test the prediction capability of different models for density (Mchaweh–Nasrifar–Moshfeghian (MNM) model and the modified Heller temperature dependent equation (MHE)) and ultrasonic velocity (different empirical equations, collision factor theory (CFT) and free length theory (FLT)). The high non-ideality of these mixtures points to strong contractive behaviour at any temperature and composition. The obtained results indicate that ionic liquid interactions into mixture are stronger than in the ionic pure components for both mixtures at any studied condition. Despite the strong ion interaction, the tested models showed, at least, the qualitative prediction capability.
topic derived properties
binary mixtures
theoretical models
url http://www.doiserbia.nb.rs/img/doi/0352-5139/2017/0352-51391700068A.pdf
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