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Study of the Thermal Properties and the Fire Performance of Flame Retardant-Organic PCM in Bulk Form

The implementation of organic phase change materials (PCMs) in several applications such as heating and cooling or building comfort is an important target in thermal energy storage (TES). However, one of the major drawbacks of organic PCMs implementation is flammability. The addition of flame retard...

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Autores principales: Palacios, Anabel, De Gracia, Alvaro, Haurie, Laia, Cabeza, Luisa F., Fernández, A. Inés, Barreneche, Camila
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5793615/
https://www.ncbi.nlm.nih.gov/pubmed/29329212
http://dx.doi.org/10.3390/ma11010117
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author Palacios, Anabel
De Gracia, Alvaro
Haurie, Laia
Cabeza, Luisa F.
Fernández, A. Inés
Barreneche, Camila
author_facet Palacios, Anabel
De Gracia, Alvaro
Haurie, Laia
Cabeza, Luisa F.
Fernández, A. Inés
Barreneche, Camila
author_sort Palacios, Anabel
collection PubMed
description The implementation of organic phase change materials (PCMs) in several applications such as heating and cooling or building comfort is an important target in thermal energy storage (TES). However, one of the major drawbacks of organic PCMs implementation is flammability. The addition of flame retardants to PCMs or shape-stabilized PCMs is one of the approaches to address this problem and improve their final deployment in the building material sector. In this study, the most common organic PCM, Paraffin RT-21, and fatty acids mixtures of capric acid (CA), myristic acid (MA), and palmitic acid (PA) in bulk, were tested to improve their fire reaction. Several flame retardants, such as ammonium phosphate, melamine phosphate, hydromagnesite, magnesium hydroxide, and aluminum hydroxide, were tested. The properties of the improved PCM with flame retardants were characterized by thermogravimetric analyses (TGA), the dripping test, and differential scanning calorimetry (DSC). The results for the dripping test show that fire retardancy was considerably enhanced by the addition of hydromagnesite (50 wt %) and magnesium hydroxide (50 wt %) in fatty acids mixtures. This will help the final implementation of these enhanced PCMs in building sector. The influence of the addition of flame retardants on the melting enthalpy and temperatures of PCMs has been evaluated.
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spelling pubmed-57936152018-02-07 Study of the Thermal Properties and the Fire Performance of Flame Retardant-Organic PCM in Bulk Form Palacios, Anabel De Gracia, Alvaro Haurie, Laia Cabeza, Luisa F. Fernández, A. Inés Barreneche, Camila Materials (Basel) Article The implementation of organic phase change materials (PCMs) in several applications such as heating and cooling or building comfort is an important target in thermal energy storage (TES). However, one of the major drawbacks of organic PCMs implementation is flammability. The addition of flame retardants to PCMs or shape-stabilized PCMs is one of the approaches to address this problem and improve their final deployment in the building material sector. In this study, the most common organic PCM, Paraffin RT-21, and fatty acids mixtures of capric acid (CA), myristic acid (MA), and palmitic acid (PA) in bulk, were tested to improve their fire reaction. Several flame retardants, such as ammonium phosphate, melamine phosphate, hydromagnesite, magnesium hydroxide, and aluminum hydroxide, were tested. The properties of the improved PCM with flame retardants were characterized by thermogravimetric analyses (TGA), the dripping test, and differential scanning calorimetry (DSC). The results for the dripping test show that fire retardancy was considerably enhanced by the addition of hydromagnesite (50 wt %) and magnesium hydroxide (50 wt %) in fatty acids mixtures. This will help the final implementation of these enhanced PCMs in building sector. The influence of the addition of flame retardants on the melting enthalpy and temperatures of PCMs has been evaluated. MDPI 2018-01-12 /pmc/articles/PMC5793615/ /pubmed/29329212 http://dx.doi.org/10.3390/ma11010117 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Palacios, Anabel
De Gracia, Alvaro
Haurie, Laia
Cabeza, Luisa F.
Fernández, A. Inés
Barreneche, Camila
Study of the Thermal Properties and the Fire Performance of Flame Retardant-Organic PCM in Bulk Form
title Study of the Thermal Properties and the Fire Performance of Flame Retardant-Organic PCM in Bulk Form
title_full Study of the Thermal Properties and the Fire Performance of Flame Retardant-Organic PCM in Bulk Form
title_fullStr Study of the Thermal Properties and the Fire Performance of Flame Retardant-Organic PCM in Bulk Form
title_full_unstemmed Study of the Thermal Properties and the Fire Performance of Flame Retardant-Organic PCM in Bulk Form
title_short Study of the Thermal Properties and the Fire Performance of Flame Retardant-Organic PCM in Bulk Form
title_sort study of the thermal properties and the fire performance of flame retardant-organic pcm in bulk form
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5793615/
https://www.ncbi.nlm.nih.gov/pubmed/29329212
http://dx.doi.org/10.3390/ma11010117
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