Chemical incompatibility and low thermal conductivity issues of molten-salt-based thermal energy storage materials can be addressed by using microstructured composites. Using a eutectic mixture of lithium and sodium carbonates as molten salt, magnesium oxide as supporting material, and graphite as thermal conductivity enhancer, the microstructural development, chemical compatibility, thermal stability, thermal conductivity, and thermal energy storage performance of composite materials are investigated. The ceramic supporting material is essential for preventing salt leakage and hence provides a solution to the chemical incompatibility issue. The use of graphite gives a significant enhancement on the thermal conductivity of the composite. An...
Among all thermal energy storage (TES) systems, latent heat thermal energy storage (LHTES) attracts ...
Leakage and low thermal conductivity limit the application of molten salts in thermal energy storage...
Molten salts have been used in solar thermal energy storage due to their high energy storage density...
AbstractThis paper discusses composite materials based on inorganic salts for medium- and high-tempe...
This paper discusses composite materials based on inorganic salts for medium- and high-temperature t...
Thermal energy is at the heart of the whole energy chain providing a main linkage between the primar...
Thermal energy is at the heart of the whole energy chain providing a main linkage between the primar...
The growing concern over nonrenewable fuel sources, coupled with the continued increase of global en...
Chloride molten salts are promising candidates for high temperature thermal storage applications, ow...
Thermal energy storage (TES) has a crucial role to play in conserving and efficiently utilising ener...
Molten salts have been widely used as energy storage materials in medium- and high-temperature therm...
The significant increase of world energy consumption raises the demand for imperatively clean energy...
The development of cost-effective and reliable high temperature phase change materials (PCMs) is key...
Molten salts are popular energy storage materials for medium- and high-temperature thermal energy st...
This paper reports a form-stable molten salt based composite phase change material (CPCM) owning ext...
Among all thermal energy storage (TES) systems, latent heat thermal energy storage (LHTES) attracts ...
Leakage and low thermal conductivity limit the application of molten salts in thermal energy storage...
Molten salts have been used in solar thermal energy storage due to their high energy storage density...
AbstractThis paper discusses composite materials based on inorganic salts for medium- and high-tempe...
This paper discusses composite materials based on inorganic salts for medium- and high-temperature t...
Thermal energy is at the heart of the whole energy chain providing a main linkage between the primar...
Thermal energy is at the heart of the whole energy chain providing a main linkage between the primar...
The growing concern over nonrenewable fuel sources, coupled with the continued increase of global en...
Chloride molten salts are promising candidates for high temperature thermal storage applications, ow...
Thermal energy storage (TES) has a crucial role to play in conserving and efficiently utilising ener...
Molten salts have been widely used as energy storage materials in medium- and high-temperature therm...
The significant increase of world energy consumption raises the demand for imperatively clean energy...
The development of cost-effective and reliable high temperature phase change materials (PCMs) is key...
Molten salts are popular energy storage materials for medium- and high-temperature thermal energy st...
This paper reports a form-stable molten salt based composite phase change material (CPCM) owning ext...
Among all thermal energy storage (TES) systems, latent heat thermal energy storage (LHTES) attracts ...
Leakage and low thermal conductivity limit the application of molten salts in thermal energy storage...
Molten salts have been used in solar thermal energy storage due to their high energy storage density...