Thermal behaviour of D-mannitol when used as PCM: Comparison of results obtained by DSC and in a thermal energy storage unit at pilot plant scale

Autor/a

Gil, Antoni

Barreneche Güerisoli, Camila

Moreno Argilés, Pere

Solé Cutrona, Cristian

Fernández Renna, Ana Inés

Cabeza, Luisa F.

Fecha de publicación

2015-02-05T13:29:18Z

2025-01-01

2013



Resumen

The use of thermal energy storage (TES) systems for solar heating and cooling applications has received considerable attention in recent decades because it has a high potential in energy savings. Phase change materials (PCMs) can store large amount of energy per mass unit compared with other TES materials. Nevertheless, the selection of the suitable PCM for each application is a key issue in any TES system design. The most important properties to take into account to select a PCM are the melting and solidification temperature, the phase change enthalpy and the stability after several thermal cycles. In this paper, D-mannitol was a candidate material to be tested as PCM in a solar cooling application due to its melting point (167 C) and a relatively high enthalpy (316.0 kJ/kg). The experiments performed by DSC have shown that the D-mannitol presents polymorphic structural changes and, therefore, its thermal properties are not always the same. Depending on the polymorphic phase obtained, D-mannitol has different melting temperature. This behaviour was corroborated in a storage tank, where it may be seen that the cooling rate of the D-mannitol is a key parameter in the formation of the different polymorphic phases.


The work is partially funded by the Spanish government (ENE2011-22722). The authors would like to thank the Catalan Government for the quality accreditation given to their research group GREA (2009 SGR 534) and research group DIOPMA (2009 SGR 645). A. Gil would like to thank the Col·legi d’Enginyers Industrials de Catalunya for his research appointment.

Tipo de documento

article
publishedVersion

Lengua

Inglés

Materias y palabras clave

D-mannitol polymorphism; Phase change materials; Storage tank

Publicado por

Elsevier

Documentos relacionados

info:eu-repo/grantAgreement/MICINN//ENE2011-22722/ES/EL ALMACENAMIENTO DE ENERGIA TERMICA COMO HERRAMIENTA DE MEJORA DE LA EFICIENCIA ENERGETICA EN LA INDUSTRIA/

Reproducció del document publicat a https://doi.org/10.1016/j.apenergy.2013.04.081

Applied Energy, 2013, vol. 111, p. 1107-1113

Derechos

(c) Elsevier, 2013

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