<  Retour au portail Polytechnique Montréal

A new approach for coupled modelling of the structural and thermo-physical properties of molten salts. Case of a polymeric liquid LiF-BeF₂

A. L. Smith, E. Capelli, R. J. M. Konings et Aïmen E. Gheribi

Article de revue (2020)

Document en libre accès dans PolyPublie et chez l'éditeur officiel
[img]
Affichage préliminaire
Libre accès au plein texte de ce document
Version officielle de l'éditeur
Conditions d'utilisation: Creative Commons: Attribution (CC BY)
Télécharger (3MB)
Afficher le résumé
Cacher le résumé

Abstract

The (Li,Be)Fx fluoride salt is an ionic liquid with complex non-ideal thermodynamic behaviour due to the formation of short-range order. In this work, we explore the relationship between local structure, thermophysical and thermodynamic properties in this system using a multidisciplinary approach that couples molecular dynamics simulations using the Polarizable Ion Model (PIM) and thermodynamic modelling assessment using the CALPHAD method. The density, thermal expansion, viscosity, thermal conductivity, molar and mixing enthalpies and heat capacity of the (Li,Be)Fₓ melt are extracted from the polarizable ionic interaction potentials and investigated across a wide range of compositions and temperatures. The agreement with the available experimental data is generally very good. The local structure is also examined in detail, in particular the transition between a molecular liquid with Li⁺, BeF²₄⁻ and F⁻ predominant species at low BeF₂ content, and a polymeric liquid at high BeF₂ content, with the formation of polymers (Be₂F³₇⁻, Be₃F⁴₁₀⁻, Be₄F⁵₁₃⁻, etc.), and finally of a three-dimensional network of corner-sharing tetrahedrally coordinated Be²⁺ cations for pure BeF². Based on the available experimental information and the output of the MD simulations, we moreover develop for the first time a coupled structural-thermodynamic model for the LiF-BeF² system based on the quasi-chemical formalism in the quadruplet approximation, that provides a physical description of the melt and reproduces (in addition to the thermodynamic data) the chemical speciation of beryllium polymeric species predicted from the simulations.

Mots clés

molecular dynamics (polarizable ion model); CALPHAD; fluoride salts; polymeric liquid

Sujet(s): 1800 Génie chimique > 1800 Génie chimique
Département: Département de génie chimique
Centre de recherche: CRCT - Centre de recherche en calcul thermochimique
Organismes subventionnaires: Netherlands Organisation for Scientific Research (NWO)
Numéro de subvention: 722.016.005
URL de PolyPublie: https://publications.polymtl.ca/44439/
Titre de la revue: Journal of Molecular Liquids (vol. 299)
Maison d'édition: Elsevier
DOI: 10.1016/j.molliq.2019.112165
URL officielle: https://doi.org/10.1016/j.molliq.2019.112165
Date du dépôt: 18 avr. 2023 15:02
Dernière modification: 29 sept. 2024 05:44
Citer en APA 7: Smith, A. L., Capelli, E., Konings, R. J. M., & Gheribi, A. E. (2020). A new approach for coupled modelling of the structural and thermo-physical properties of molten salts. Case of a polymeric liquid LiF-BeF₂. Journal of Molecular Liquids, 299, 112165 (24 pages). https://doi.org/10.1016/j.molliq.2019.112165

Statistiques

Total des téléchargements à partir de PolyPublie

Téléchargements par année

Provenance des téléchargements

Dimensions

Actions réservées au personnel

Afficher document Afficher document