Ternary mixture of fatty acids as phase change materials for thermal energy storage applications

The present study deals with the development of ternary mixtures of fatty acids for low temperature thermal energy storage applications. The commercial grade fatty acids such as Capric Acid (CA), Lauric Acid (LA), Palmitic Acid (PA) and Stearic Acid (SA), have been used to prepare stable, solid–liqu...

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Main Authors: Karunesh Kant, A. Shukla, Atul Sharma
Format: Article
Language:English
Published: Elsevier 2016-11-01
Series:Energy Reports
Subjects:
DSC
Online Access:http://www.sciencedirect.com/science/article/pii/S235248471630049X
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spelling doaj-65f6e9561430468eb877f8345816d8002020-11-24T22:36:31ZengElsevierEnergy Reports2352-48472016-11-012C27427910.1016/j.egyr.2016.10.002Ternary mixture of fatty acids as phase change materials for thermal energy storage applicationsKarunesh KantA. ShuklaAtul SharmaThe present study deals with the development of ternary mixtures of fatty acids for low temperature thermal energy storage applications. The commercial grade fatty acids such as Capric Acid (CA), Lauric Acid (LA), Palmitic Acid (PA) and Stearic Acid (SA), have been used to prepare stable, solid–liquid phase change material (PCM) for the same. In this regard, a series of ternary mixture i.e. CA–LA–SA (CLS) and CA–PA–SA (CPS) have been developed with different weight percentages. Thermal characteristics of these developed ternary mixture i.e. melting temperature and latent heat of fusion have been measured by using Differential Scanning Calorimeter (DSC) technique. The synthesized materials are found to have melting temperature in the range of 14–21 °C (along with adequate amount of latent heat of fusion), which may be quite useful for several low temperature thermal energy storage applications.http://www.sciencedirect.com/science/article/pii/S235248471630049XPhase change materialsLatent heat of FusionMelting temperatureDSC
collection DOAJ
language English
format Article
sources DOAJ
author Karunesh Kant
A. Shukla
Atul Sharma
spellingShingle Karunesh Kant
A. Shukla
Atul Sharma
Ternary mixture of fatty acids as phase change materials for thermal energy storage applications
Energy Reports
Phase change materials
Latent heat of Fusion
Melting temperature
DSC
author_facet Karunesh Kant
A. Shukla
Atul Sharma
author_sort Karunesh Kant
title Ternary mixture of fatty acids as phase change materials for thermal energy storage applications
title_short Ternary mixture of fatty acids as phase change materials for thermal energy storage applications
title_full Ternary mixture of fatty acids as phase change materials for thermal energy storage applications
title_fullStr Ternary mixture of fatty acids as phase change materials for thermal energy storage applications
title_full_unstemmed Ternary mixture of fatty acids as phase change materials for thermal energy storage applications
title_sort ternary mixture of fatty acids as phase change materials for thermal energy storage applications
publisher Elsevier
series Energy Reports
issn 2352-4847
publishDate 2016-11-01
description The present study deals with the development of ternary mixtures of fatty acids for low temperature thermal energy storage applications. The commercial grade fatty acids such as Capric Acid (CA), Lauric Acid (LA), Palmitic Acid (PA) and Stearic Acid (SA), have been used to prepare stable, solid–liquid phase change material (PCM) for the same. In this regard, a series of ternary mixture i.e. CA–LA–SA (CLS) and CA–PA–SA (CPS) have been developed with different weight percentages. Thermal characteristics of these developed ternary mixture i.e. melting temperature and latent heat of fusion have been measured by using Differential Scanning Calorimeter (DSC) technique. The synthesized materials are found to have melting temperature in the range of 14–21 °C (along with adequate amount of latent heat of fusion), which may be quite useful for several low temperature thermal energy storage applications.
topic Phase change materials
Latent heat of Fusion
Melting temperature
DSC
url http://www.sciencedirect.com/science/article/pii/S235248471630049X
work_keys_str_mv AT karuneshkant ternarymixtureoffattyacidsasphasechangematerialsforthermalenergystorageapplications
AT ashukla ternarymixtureoffattyacidsasphasechangematerialsforthermalenergystorageapplications
AT atulsharma ternarymixtureoffattyacidsasphasechangematerialsforthermalenergystorageapplications
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