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Title
Mass transport in LiBr–H2O solutions: Coupling between diffusion, thermodiffusion, and composition
Author
Perez de Luco, Irene
Errarte, Ane
Fernandez de Arroiabe, Peru
Mialdun, Aliaksandr
Mojtabi, A.
Costeseque, P.
Shevtsova, Valentina
Bou-Ali, M. MounirORCID
Research Group
Mecánica de fluidos
Other institutions
Ikerbasque
https://ror.org/00wvqgd19
https://ror.org/01ahyrz84
Version
Postprint
Document type
Journal Article
Language
English
Rights
© 2025 AIP
Access
Open access
URI
https://hdl.handle.net/20.500.11984/13986
Publisher’s version
https://doi.org/10.1063/5.0276430
Published at
Journal of Chemical Physics  Vol. 163. N. 3. N. art. 034501, 2025
Publisher
AIP
Keywords
Molecular dynamics
Thermophoresis
Materials properties
Subject (UNESCO Thesaurus)
Thermodynamics
UNESCO Classification
Thermodynamics
Abstract
We present an experimental investigation of mass transport phenomena in aqueous lithium bromide (LiBr–H2O) solutions, focusing on both molecular diffusion and thermodiffusion (Soret effect). Our resul ... [+]
We present an experimental investigation of mass transport phenomena in aqueous lithium bromide (LiBr–H2O) solutions, focusing on both molecular diffusion and thermodiffusion (Soret effect). Our results show a non-monotonic trend in the diffusion coefficient D with a pronounced maximum at w ≈ 0.3 kg/kg (LiBr), a feature that is consistently observed in multiple independent studies and likely reflects microstructural transitions within the solution. Using a Soret cell with porous media, we measured Soret coefficients ST over a range of mass fractions relevant for practical applications. The Soret coefficient revealed consistently negative values, indicating thermophilic behavior in which LiBr migrates toward warmer regions under a temperature gradient. Interestingly, while the absolute value of thermodiffusion coefficient |DT| decreases with concentration, the Soret ST = |DT/D| increases in magnitude due to the stronger suppression of molecular diffusion. These results highlight the importance of considering both molecular mobility and solution structure when analyzing transport behavior. [-]
Funder
Gobierno Vasco
Gobierno Vasco
Gobierno de España
Program
Elkartek 2024
Ikertalde Convocatoria 2022-2025
Programa Estatal para Impulsar la Investigación Científico-Técnica y su Transferencia, del Plan Estatal de Investigación Científica, Técnica y de Innovación 2021-2023. Proyectos de generación de conocimiento 2021
Number
KK-2024-00079
IT1505-22
PID2021-124232OB-I00
Award URI
Sin información
Sin información
Sin información
Project
Aprovechamiento de calores residuales de baja temperatura mediante sistema de expansión isobárica (LOWHEAT)
Mecánica de fluidos (IKERTALDE 2022-2025)
Mecanismos de Transporte en la mejora de la absorción debido a los aditivos (TREATED)
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