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Predicting the ionicity of ionic liquids in binary mixtures based on solubility data

Título
Predicting the ionicity of ionic liquids in binary mixtures based on solubility data
Tipo
Artigo em Revista Científica Internacional
Ano
2023
Revista
Vol. 567 113717
ISSN: 0378-3812
Editora: Elsevier
Indexação
Publicação em ISI Web of Knowledge ISI Web of Knowledge - 0 Citações
Publicação em ISI Web of Science ISI Web of Science
Classificação Científica
CORDIS: Ciências Tecnológicas
FOS: Ciências da engenharia e tecnologias
Outras Informações
ID Authenticus: P-00X-RGM
Abstract (EN): Ionic liquids (ILs) are ionic compounds which are liquid at room temperature and pressure, and can be applied in many fields, such as industrial synthesis, catalysis, electrochemistry, and liquid-liquid separations. To enhance the description of mixtures containing ILs and, consequently, to allow a more rigorous evaluation of the feasi-bility of chemical processes, it is important to study properties such as the ionicity (alpha) of ionic liquids, i.e., the fraction of dissociated molecules. However, experimental determinations of ionicity (also known as dissociation degree or dissociation extent) are time-consuming and require the handling of expensive equipment, so the prediction of this property as a function of the system's composition using thermodynamic modelling is of great relevance. For that purpose, the UNIversal QUAsi-Chemical (UNIQUAC) model was combined with the Pitzer-Debye-Huckel (PDH) equation, which is often referred as PDH+UNIQUAC, and it was used to predict the ionicity of ILs in binary mixtures based on liquid-liquid equilibria (LLE) data. The results were compared with the available experimental data from literature and low deviations were observed, validating thereafter the devel-oped approach. In total, the IL ionicity was predicted, as function of composition, for fourteen ionic liquid / solvent (water or 1-butanol) binary systems. Further, a sensitivity analysis was performed to evaluate the in-fluence of the LLE uncertainties on ionicity (alpha), and it was concluded that alpha was not significantly affected by small deviations, for which the methodology proposed in this work was considered robust. The prediction of IL ionicity with composition using PDH+UNIQUAC thermodynamic modelling was considered a breakthrough, since very accurate results were achieved without the need of undergoing complex experiments.
Idioma: Inglês
Tipo (Avaliação Docente): Científica
Nº de páginas: 8
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