Cryogenic solid solubility measurements for HFC-32+CO2 binary mixtures at temperatures between (132 and 217) K.

Accurate phase equilibrium data for mixtures of eco-friendly but mildly-flammable refrigerants with inert components like CO2 will help the refrigeration industry safely employ working fluids with 80 % less global warming potential than those of many widely-used refrigerants. In this work, a visual...

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Main Authors: Sadaghiani, Mirhadi S., Siahvashi, Arman, Arami-Niya, Arash, Tsuji, Tomoya, Yukumoto, Atsuhiro, Seiki, Yoshio, Al Ghafri, Saif Z. S., Stanwix, Paul L., May, Eric F.
Format: Article
Language:English
Published: Springer 2023
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Online Access:http://eprints.utm.my/105907/1/TomoyaTsuji2023_CrygenicSolidSolubilityMeasurementsforHFC-32%2BCO2Binary.pdf
http://eprints.utm.my/105907/
http://dx.doi.org/10.1007/s10765-023-03243-w
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spelling my.utm.1059072024-05-20T07:30:35Z http://eprints.utm.my/105907/ Cryogenic solid solubility measurements for HFC-32+CO2 binary mixtures at temperatures between (132 and 217) K. Sadaghiani, Mirhadi S. Siahvashi, Arman Arami-Niya, Arash Tsuji, Tomoya Yukumoto, Atsuhiro Seiki, Yoshio Al Ghafri, Saif Z. S. Stanwix, Paul L. May, Eric F. TP Chemical technology Accurate phase equilibrium data for mixtures of eco-friendly but mildly-flammable refrigerants with inert components like CO2 will help the refrigeration industry safely employ working fluids with 80 % less global warming potential than those of many widely-used refrigerants. In this work, a visual high-pressure measurement setup was used to measure solid–fluid equilibrium (SFE) of HFC-32 + CO2 binary systems at temperatures between (132 and 217) K. The experimental data show a eutectic composition of around 11 mol % CO2 with a eutectic temperature of 131.9 K at solid–liquid–vapour (SLVE) condition. Measured SLVE and solid–liquid equilibrium data were used to tune a thermodynamic model implemented in the ThermoFAST software package by adjusting the binary interaction parameter (BIP) in the Peng–Robinson equation of state. The tuned model represents the measured melting points for binary mixtures with a root mean square deviation (RMSD) of 3.2 K, which is 60 % less than achieved with the default BIP. An RMSD of 0.5 K was obtained using the tuned model for the mixtures with CO2 fractions over 28 mol % relative to an RMSD of 3.4 K obtained with the default model. The new property data and improved model presented in this work will help avoid solid deposition risk in cryogenic applications of the HFC-32 + CO2 binary system and promote wider applications of more environmentally-friendly refrigerant mixtures. Springer 2023-09 Article PeerReviewed application/pdf en http://eprints.utm.my/105907/1/TomoyaTsuji2023_CrygenicSolidSolubilityMeasurementsforHFC-32%2BCO2Binary.pdf Sadaghiani, Mirhadi S. and Siahvashi, Arman and Arami-Niya, Arash and Tsuji, Tomoya and Yukumoto, Atsuhiro and Seiki, Yoshio and Al Ghafri, Saif Z. S. and Stanwix, Paul L. and May, Eric F. (2023) Cryogenic solid solubility measurements for HFC-32+CO2 binary mixtures at temperatures between (132 and 217) K. International Journal of Thermophysics, 44 (9). pp. 1-16. ISSN 0195-928X http://dx.doi.org/10.1007/s10765-023-03243-w DOI: 10.1007/s10765-023-03243-w
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Sadaghiani, Mirhadi S.
Siahvashi, Arman
Arami-Niya, Arash
Tsuji, Tomoya
Yukumoto, Atsuhiro
Seiki, Yoshio
Al Ghafri, Saif Z. S.
Stanwix, Paul L.
May, Eric F.
Cryogenic solid solubility measurements for HFC-32+CO2 binary mixtures at temperatures between (132 and 217) K.
description Accurate phase equilibrium data for mixtures of eco-friendly but mildly-flammable refrigerants with inert components like CO2 will help the refrigeration industry safely employ working fluids with 80 % less global warming potential than those of many widely-used refrigerants. In this work, a visual high-pressure measurement setup was used to measure solid–fluid equilibrium (SFE) of HFC-32 + CO2 binary systems at temperatures between (132 and 217) K. The experimental data show a eutectic composition of around 11 mol % CO2 with a eutectic temperature of 131.9 K at solid–liquid–vapour (SLVE) condition. Measured SLVE and solid–liquid equilibrium data were used to tune a thermodynamic model implemented in the ThermoFAST software package by adjusting the binary interaction parameter (BIP) in the Peng–Robinson equation of state. The tuned model represents the measured melting points for binary mixtures with a root mean square deviation (RMSD) of 3.2 K, which is 60 % less than achieved with the default BIP. An RMSD of 0.5 K was obtained using the tuned model for the mixtures with CO2 fractions over 28 mol % relative to an RMSD of 3.4 K obtained with the default model. The new property data and improved model presented in this work will help avoid solid deposition risk in cryogenic applications of the HFC-32 + CO2 binary system and promote wider applications of more environmentally-friendly refrigerant mixtures.
format Article
author Sadaghiani, Mirhadi S.
Siahvashi, Arman
Arami-Niya, Arash
Tsuji, Tomoya
Yukumoto, Atsuhiro
Seiki, Yoshio
Al Ghafri, Saif Z. S.
Stanwix, Paul L.
May, Eric F.
author_facet Sadaghiani, Mirhadi S.
Siahvashi, Arman
Arami-Niya, Arash
Tsuji, Tomoya
Yukumoto, Atsuhiro
Seiki, Yoshio
Al Ghafri, Saif Z. S.
Stanwix, Paul L.
May, Eric F.
author_sort Sadaghiani, Mirhadi S.
title Cryogenic solid solubility measurements for HFC-32+CO2 binary mixtures at temperatures between (132 and 217) K.
title_short Cryogenic solid solubility measurements for HFC-32+CO2 binary mixtures at temperatures between (132 and 217) K.
title_full Cryogenic solid solubility measurements for HFC-32+CO2 binary mixtures at temperatures between (132 and 217) K.
title_fullStr Cryogenic solid solubility measurements for HFC-32+CO2 binary mixtures at temperatures between (132 and 217) K.
title_full_unstemmed Cryogenic solid solubility measurements for HFC-32+CO2 binary mixtures at temperatures between (132 and 217) K.
title_sort cryogenic solid solubility measurements for hfc-32+co2 binary mixtures at temperatures between (132 and 217) k.
publisher Springer
publishDate 2023
url http://eprints.utm.my/105907/1/TomoyaTsuji2023_CrygenicSolidSolubilityMeasurementsforHFC-32%2BCO2Binary.pdf
http://eprints.utm.my/105907/
http://dx.doi.org/10.1007/s10765-023-03243-w
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score 13.201949