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Optimisation of water-free Phase Change Emulsions for cold energy storage

A. Tenorio-Alfonso(1), C. Delgado-Sánchez(1), A. A. Cuadri(1), P. Partal(1), A. Guerrero(2), F.J. Navarro(1)

1. Pro2TecS-Chemical Product and Process Technology Research Centre,
Department of Chemical Engineering, Physical Chemistry and Materials Science, E.T.S.I., University of Huelva, Campus El Carmen, Huelva (Spain)
2. Department of Chemical Engineering, Escuela Politécnica Superior, Universidad de Sevilla (Spain)

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2026-02-15

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Abstract

The transition to sustainable energy systems is essential for reducing reliance on traditional fossil fuels and combating climate change. In this context, advanced energy storage technologies, such as Thermal Energy Storage (TES) systems, play a pivotal role. These systems utilize Phase Change Materials (PCMs) that store thermal energy through solid-liquid phase transitions. To enhance their flow behaviour, these materials can be dispersed in heat transfer fluids, resulting in Phase Change Emulsions (PCEs). However, current PCEs are primarily water-based, which imposes certain technical limitations. This study, therefore, aims to develop a novel energy storage approach by formulating anhydrous PCEs using mixtures of D-Limonene, polyethylene glycol 400, and silica nanoparticles, with potential applications in cold energy storage. The research investigates the effect of nanoparticle concentration (ranging from 0.1% to 4.8%) on the thermal, microstructural, and rheological properties of the PCEs. The results demonstrate that emulsions with appropriate nanoparticle content (0.1-1%) exhibit favourable thermal and rheological performance, highlighting their potential for applications in cold chain logistics and thermal comfort.

Key words: Energy Storage, Pickering Emulsion, Phase Change Material, Polyethylene Glycol, D-Limonene

Published in: Renewable Energies, Environment & Power Quality Journal (REE&PQJ)
ISSUE: Vol. 25. No. 2 Pages:133-135
E-ISSN: 3020-531 X Date of Current Version: 2026-02-01
REF: 521 Issue Date: 2026-02-15
DOI:10.24084/reepqj25-521 Publisher: AEDERMACP/ EA4EPQ

References

[1] Y. Liu, Y. Zhang, M. Li, Y. Wang, G. Li, Q. Yu, R. Tang, X. Yang and Z. Li, “Novel water-based composite phase change materials for cold energy storage applications”. Renewable Energy (2025), Vol. 240, pp. 122174.

[2] T. Feng, J. Ji and X. Zhang, “Research progress of phase change cold energy storage materials used in cold chain logistics of aquatic products”. Journal of Energy Storage (2023), Vol. 60, pp. 106568.

[3] F. Wang, C. Zhang, J. Liu, X. Fang and Z. Zhang, “Highly stable graphite nanoparticle-dispersed phase change emulsions with little supercooling and high thermal conductivity for cold energy storage”. Applied energy (2017), Vol. 188, pp. 97-106.

[4] C. Wei, J. Shao and J. Darkwa, “Experimental investigations into thermal performance of phase change emulsion in a fin-and-tube heat exchanger”. International Journal of Low-Carbon Technologies (2023), Vol. 18, pp. 175-183.

 
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