A method for preparing and characterizing microencapsulated phase change materials (MPCM) was developed. A comparison with a commercial MPCM is also presented. Both MPCM contained paraffin wax as PCM with acrylic shell. The melting temperature of the PCM was around 21 °C, suitable for building applications. The M-2 (our laboratory made sample) and Micronal® DS 5008 X (BASF) samples were characterized using SEM, DSC, nano-indentation technique, and Gas Chromatography/Mass spectrometry (GC-MS). Both samples presented a 6 μm average size and a spherical shape. Thermal energy storage (TES) capacities were 111.73 J·g−1 and 99.3 J·g−1 for M-2 and Micronal® DS 5008 X, respectively. Mechanical characterization of the samples was performed by nano-i...
Phase Change Materials (PCMs) have been considered for thermal storage in buildings since before 198...
Experimental study has been carried out towards the development of a multiphase change material (MCM...
The use of phase change materials (PCMs) for energy storage has received great attention in recent y...
A method for preparing and characterizing microencapsulated phase change materials (MPCM) was develo...
AbstractThe present work studies a Phase Change Slurry (PCS) as a proposed Thermal Energy Storage (T...
In this study, two different types of Phase Change Materials (PCM) suitable for Thermal Energy Stora...
Microencapsulated Phase Change Materials (MPCM) are widely used in active and passive systems for th...
This paper was written in collaboration with researchers at the University of Hull.Micro-encapsulate...
The present work studies a Phase Change Slurry (PCS) as a proposed Thermal Energy Storage (TES) medi...
Buildings contribute to 40% of total global energy consumption, which is responsible to 38% of green...
Phase change materials (PCM) can be employed in many fields because of their capacity to absorb and ...
Thermal energy storage (TES) is one method to accumulate thermal energy. In TES, latent heat storage...
For passive building applications, phase change materials (PCMs) are microencapsulated to avoid leak...
Microencapsulated phase change materials (MEPCM) could be used for energy saving applications in bui...
Phase change materials (PCMs) have been identified as potential candidates for building energy optim...
Phase Change Materials (PCMs) have been considered for thermal storage in buildings since before 198...
Experimental study has been carried out towards the development of a multiphase change material (MCM...
The use of phase change materials (PCMs) for energy storage has received great attention in recent y...
A method for preparing and characterizing microencapsulated phase change materials (MPCM) was develo...
AbstractThe present work studies a Phase Change Slurry (PCS) as a proposed Thermal Energy Storage (T...
In this study, two different types of Phase Change Materials (PCM) suitable for Thermal Energy Stora...
Microencapsulated Phase Change Materials (MPCM) are widely used in active and passive systems for th...
This paper was written in collaboration with researchers at the University of Hull.Micro-encapsulate...
The present work studies a Phase Change Slurry (PCS) as a proposed Thermal Energy Storage (TES) medi...
Buildings contribute to 40% of total global energy consumption, which is responsible to 38% of green...
Phase change materials (PCM) can be employed in many fields because of their capacity to absorb and ...
Thermal energy storage (TES) is one method to accumulate thermal energy. In TES, latent heat storage...
For passive building applications, phase change materials (PCMs) are microencapsulated to avoid leak...
Microencapsulated phase change materials (MEPCM) could be used for energy saving applications in bui...
Phase change materials (PCMs) have been identified as potential candidates for building energy optim...
Phase Change Materials (PCMs) have been considered for thermal storage in buildings since before 198...
Experimental study has been carried out towards the development of a multiphase change material (MCM...
The use of phase change materials (PCMs) for energy storage has received great attention in recent y...