A series of binary mixtures of Methyl Palmitate (MP) and Lauric Acid (LA) were prepared and investigated, aiming for potential phase change material (PCM) for thermal energy storage systems. The thermal analysis of the PCM binary mixtures was investigated by means of Differential Scanning Calorimetry (DSC). A theoretical and experimental determination of the eutectic mixture was established. The results indicated that the eutectic binary mixture of 60%MP and 40%LA has desirable properties of phase transition temperatures within the comfort temperature range (Tm = 25.6 °C, Tf = 20.2 °C) and high latent heat capacity (Î Hm = 205.4 J/g, Î Hf = 205.8 J/g). The paper experimentally studied the other important thermo-physical properties required ...
A novel phase change material (PCM) made from fatty acids is proposed for usage in domestic water h...
Phase change materials (PCMs) are widely applied in recent decades due to their good thermal perform...
The twenty-first century is witnessing a quite rapid shift towards eco-friendly and green energy sou...
The thermal characteristic reliability of two binary mixtures of fatty acid, myristic acid/palmitic ...
AbstractThe thermal characteristic stability of myristic acid/palmitic acid/sodium laurate (MA/PA/SL...
A series of fatty acid binary eutectic mixtures were prepared by using capric acid, lauric acid, myr...
This paper is focused on preparation and performance analysis of a series of form-stable phase chang...
Latent heat storage in phase change material (PCM) is one of the efficient ways of storing thermal e...
This work aims to characterize phase change materials (PCM) for thermal energy storage in buildings ...
Thermal energy storage with phase change materials (PCMs) is of great concern for energy conservatio...
Low- and ultra-low-grade thermal energy have significant recycling value for energy saving and carbo...
In order to obtain the suitable phase change material (PCM) with low phase change temperature and im...
The present study deals with the development of ternary mixtures of fatty acids for low temperature ...
AbstractThe present study deals with the development of ternary mixtures of fatty acids for low temp...
In this study, two types of fatty acid based composite phase change material (CPCM) have been prepar...
A novel phase change material (PCM) made from fatty acids is proposed for usage in domestic water h...
Phase change materials (PCMs) are widely applied in recent decades due to their good thermal perform...
The twenty-first century is witnessing a quite rapid shift towards eco-friendly and green energy sou...
The thermal characteristic reliability of two binary mixtures of fatty acid, myristic acid/palmitic ...
AbstractThe thermal characteristic stability of myristic acid/palmitic acid/sodium laurate (MA/PA/SL...
A series of fatty acid binary eutectic mixtures were prepared by using capric acid, lauric acid, myr...
This paper is focused on preparation and performance analysis of a series of form-stable phase chang...
Latent heat storage in phase change material (PCM) is one of the efficient ways of storing thermal e...
This work aims to characterize phase change materials (PCM) for thermal energy storage in buildings ...
Thermal energy storage with phase change materials (PCMs) is of great concern for energy conservatio...
Low- and ultra-low-grade thermal energy have significant recycling value for energy saving and carbo...
In order to obtain the suitable phase change material (PCM) with low phase change temperature and im...
The present study deals with the development of ternary mixtures of fatty acids for low temperature ...
AbstractThe present study deals with the development of ternary mixtures of fatty acids for low temp...
In this study, two types of fatty acid based composite phase change material (CPCM) have been prepar...
A novel phase change material (PCM) made from fatty acids is proposed for usage in domestic water h...
Phase change materials (PCMs) are widely applied in recent decades due to their good thermal perform...
The twenty-first century is witnessing a quite rapid shift towards eco-friendly and green energy sou...