This work aims to characterize phase change materials (PCM) for thermal energy storage in buildings (thermal comfort). Fatty acids, biobased organic PCM, are attractive candidates for integration into active or passive storage systems for targeted application. Three pure fatty acids (capric, myristic and palmitic acids) and two eutectic mixtures (capric-myristic and capric-palmitic acids) are studied in this paper. Although the main storage properties of pure fatty acids have already been investigated and reported in the literature, the information available on the eutectic mixtures is very limited (only melting temperature and enthalpy). This paper presents a complete experimental characterization of these pure and mixed fatty acids, inclu...
A series of binary mixtures of Methyl Palmitate (MP) and Lauric Acid (LA) were prepared and investig...
Thermal energy storage is known as a key element to optimize the use of renewable energies and to im...
An effective way to enhance the thermal storage capacity of buildings is to incorporate phase change...
This work aims to characterize phase change materials (PCM) for thermal energy storage in buildings ...
Latent heat storage in phase change material (PCM) is one of the efficient ways of storing thermal e...
International audiencePhase change materials have been overwhelmingly used for thermal energy storag...
The thermal characteristic reliability of two binary mixtures of fatty acid, myristic acid/palmitic ...
A series of fatty acid binary eutectic mixtures were prepared by using capric acid, lauric acid, myr...
The present study deals with the development of ternary mixtures of fatty acids for low temperature ...
In the present work, we describe the chemical synthesis of 3-HFAs as prominent derivatives of fatty ...
In this study, new multicomponent mixtures of fatty acids for low temperature thermal energy storage...
AbstractThe present study deals with the development of ternary mixtures of fatty acids for low temp...
A novel phase change material (PCM) made from fatty acids is proposed for usage in domestic water h...
In this study, two types of fatty acid based composite phase change material (CPCM) have been prepar...
Phase change materials (PCM) used in thermal energy storage (TES) systems have been presented, over ...
A series of binary mixtures of Methyl Palmitate (MP) and Lauric Acid (LA) were prepared and investig...
Thermal energy storage is known as a key element to optimize the use of renewable energies and to im...
An effective way to enhance the thermal storage capacity of buildings is to incorporate phase change...
This work aims to characterize phase change materials (PCM) for thermal energy storage in buildings ...
Latent heat storage in phase change material (PCM) is one of the efficient ways of storing thermal e...
International audiencePhase change materials have been overwhelmingly used for thermal energy storag...
The thermal characteristic reliability of two binary mixtures of fatty acid, myristic acid/palmitic ...
A series of fatty acid binary eutectic mixtures were prepared by using capric acid, lauric acid, myr...
The present study deals with the development of ternary mixtures of fatty acids for low temperature ...
In the present work, we describe the chemical synthesis of 3-HFAs as prominent derivatives of fatty ...
In this study, new multicomponent mixtures of fatty acids for low temperature thermal energy storage...
AbstractThe present study deals with the development of ternary mixtures of fatty acids for low temp...
A novel phase change material (PCM) made from fatty acids is proposed for usage in domestic water h...
In this study, two types of fatty acid based composite phase change material (CPCM) have been prepar...
Phase change materials (PCM) used in thermal energy storage (TES) systems have been presented, over ...
A series of binary mixtures of Methyl Palmitate (MP) and Lauric Acid (LA) were prepared and investig...
Thermal energy storage is known as a key element to optimize the use of renewable energies and to im...
An effective way to enhance the thermal storage capacity of buildings is to incorporate phase change...