Low- and ultra-low-grade thermal energy have significant recycling value for energy saving and carbon footprint reduction. Efficient thermal energy storage technology based on phase change materials (PCMs) will help improve heat recovery. This study aimed to develop a composite eutectic fatty acid of lauric acid (LA) and stearic acid (SA) binary system with expanded graphite (EG). The experimental measured eutectic temperature was 31.2 °C with an LA-to-SA mass ratio of 7:3. Afterwards, 1~15 wt.% EG was composited to the eutectic acid, and the thermophysical properties of the composite PCMs were measured by differential scanning calorimetry (DSC) and transient plane source (TPS) methods. The results demonstrated that the phase transition tem...
The thermal characteristic reliability of two binary mixtures of fatty acid, myristic acid/palmitic ...
This work aims to characterize phase change materials (PCM) for thermal energy storage in buildings ...
The storage and utilization of waste heat in low and medium temperature ranges using phase change ma...
The aim of this study is to prepare a novel form-stable phase-change material (PCM), palmitic acid-s...
Lauric acid (LA) and myristic acid (MA) were used to prepare a binary eutectic mixture. The expanded...
Latent heat storage in phase change material (PCM) is one of the efficient ways of storing thermal e...
Phase change material (PCM) composites for latent thermal energy storage were made by mixing three d...
Thermal energy storage with phase change materials (PCMs) is of great concern for energy conservatio...
In this study, two types of fatty acid based composite phase change material (CPCM) have been prepar...
A series of binary mixtures of Methyl Palmitate (MP) and Lauric Acid (LA) were prepared and investig...
Phase change materials (PCM) used in latent heat storage systems usually have very low thermal condu...
A series of fatty acid binary eutectic mixtures were prepared by using capric acid, lauric acid, myr...
A novel phase change material (PCM) made from fatty acids is proposed for usage in domestic water h...
© Published under licence by IOP Publishing Ltd. A composite phase change material (CPCM) of myristi...
This paper is focused on preparation and performance analysis of a series of form-stable phase chang...
The thermal characteristic reliability of two binary mixtures of fatty acid, myristic acid/palmitic ...
This work aims to characterize phase change materials (PCM) for thermal energy storage in buildings ...
The storage and utilization of waste heat in low and medium temperature ranges using phase change ma...
The aim of this study is to prepare a novel form-stable phase-change material (PCM), palmitic acid-s...
Lauric acid (LA) and myristic acid (MA) were used to prepare a binary eutectic mixture. The expanded...
Latent heat storage in phase change material (PCM) is one of the efficient ways of storing thermal e...
Phase change material (PCM) composites for latent thermal energy storage were made by mixing three d...
Thermal energy storage with phase change materials (PCMs) is of great concern for energy conservatio...
In this study, two types of fatty acid based composite phase change material (CPCM) have been prepar...
A series of binary mixtures of Methyl Palmitate (MP) and Lauric Acid (LA) were prepared and investig...
Phase change materials (PCM) used in latent heat storage systems usually have very low thermal condu...
A series of fatty acid binary eutectic mixtures were prepared by using capric acid, lauric acid, myr...
A novel phase change material (PCM) made from fatty acids is proposed for usage in domestic water h...
© Published under licence by IOP Publishing Ltd. A composite phase change material (CPCM) of myristi...
This paper is focused on preparation and performance analysis of a series of form-stable phase chang...
The thermal characteristic reliability of two binary mixtures of fatty acid, myristic acid/palmitic ...
This work aims to characterize phase change materials (PCM) for thermal energy storage in buildings ...
The storage and utilization of waste heat in low and medium temperature ranges using phase change ma...