Thermal Conductivity of Metastable Ionic Liquid [$C_{2}mim$][$CH_{3}SO_{3}$]

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Auteurs principaux: Lozano-Martín, Daniel, Vieira, Salomé Inês Cardoso, Paredes, Xavier, Lourenço, Maria José Vitoriano, de Castro, Carlos A. Nieto, Sengers, Jan V., Massonne, Klemens
Format: Preprint
Publié: 2024
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author Lozano-Martín, Daniel
Vieira, Salomé Inês Cardoso
Paredes, Xavier
Lourenço, Maria José Vitoriano
de Castro, Carlos A. Nieto
Sengers, Jan V.
Massonne, Klemens
author_facet Lozano-Martín, Daniel
Vieira, Salomé Inês Cardoso
Paredes, Xavier
Lourenço, Maria José Vitoriano
de Castro, Carlos A. Nieto
Sengers, Jan V.
Massonne, Klemens
contents Ionic liquids have been suggested as new engineering fluids, namely in the area of heat transfer, as alternatives to current biphenyl and diphenyl oxide, alkylated aromatics and dimethyl polysiloxane oils, which degrade above 200 °C and pose some environmental problems. Recently, we have proposed 1-ethyl-3-methylimidazolium methanesulfonate, [$C_{2}mim$][$CH_{3}SO_{3}$], as a new heat transfer fluid, because of its thermophysical and toxicological properties. However, there are some interesting points raised in this work, namely the possibility of the existence of liquid metastability below the melting point (303 K) or second order-disorder transitions ($λ$-type) before reaching the calorimetric freezing point. This paper analyses in more detail this zone of the phase diagram of the pure fluid, by reporting accurate thermal-conductivity measurements between 278 and 355 K with an estimated uncertainty of 2% at a 95% confidence level. A new value of the melting temperature is also reported, $T_{melt}$ = 307.8 $\pm$ 1 K. Results obtained support liquid metastability behaviour in the solid-phase region and permit the use of this ionic liquid at a heat transfer fluid at temperatures below its melting point. Thermal conductivity models based on Bridgman theory and estimation formulas were also used in this work, failing to predict the experimental data within its uncertainty.
format Preprint
id arxiv_https___arxiv_org_abs_2409_06346
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Thermal Conductivity of Metastable Ionic Liquid [$C_{2}mim$][$CH_{3}SO_{3}$]
Lozano-Martín, Daniel
Vieira, Salomé Inês Cardoso
Paredes, Xavier
Lourenço, Maria José Vitoriano
de Castro, Carlos A. Nieto
Sengers, Jan V.
Massonne, Klemens
Chemical Physics
Ionic liquids have been suggested as new engineering fluids, namely in the area of heat transfer, as alternatives to current biphenyl and diphenyl oxide, alkylated aromatics and dimethyl polysiloxane oils, which degrade above 200 °C and pose some environmental problems. Recently, we have proposed 1-ethyl-3-methylimidazolium methanesulfonate, [$C_{2}mim$][$CH_{3}SO_{3}$], as a new heat transfer fluid, because of its thermophysical and toxicological properties. However, there are some interesting points raised in this work, namely the possibility of the existence of liquid metastability below the melting point (303 K) or second order-disorder transitions ($λ$-type) before reaching the calorimetric freezing point. This paper analyses in more detail this zone of the phase diagram of the pure fluid, by reporting accurate thermal-conductivity measurements between 278 and 355 K with an estimated uncertainty of 2% at a 95% confidence level. A new value of the melting temperature is also reported, $T_{melt}$ = 307.8 $\pm$ 1 K. Results obtained support liquid metastability behaviour in the solid-phase region and permit the use of this ionic liquid at a heat transfer fluid at temperatures below its melting point. Thermal conductivity models based on Bridgman theory and estimation formulas were also used in this work, failing to predict the experimental data within its uncertainty.
title Thermal Conductivity of Metastable Ionic Liquid [$C_{2}mim$][$CH_{3}SO_{3}$]
topic Chemical Physics
url https://arxiv.org/abs/2409.06346