In this study the hydration/dehydration kinetics are studied of a thermochemical material (TCM), CaCl2, stabilized with aramide. The experiments show that the TCM can be stabilized with help of aramide within three cycles. The material show constant hydration/dehydration rate over seven cycles, but that the hydration/dehydration characteristics are slower than for pure material after 10 cycles
We have experimentally determined the main thermodynamic properties of SrCl2, a potentially promisin...
International audienceWe studied the kinetics and mechanism of the dehydration reaction of calcium s...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
In this study the hydration/dehydration kinetics are studied of a thermochemical material (TCM), CaC...
Compared to other energy storage concepts, thermochemical energy storage stands out with high storag...
AbstractHydration and dehydration of Ca(OH)2/CaO, CaCl2 • 6 H2O/CaCl2 and MgCl2 • 6 H2O/MgCl2 • 2H2O...
Salt hydrates store solar energy in chemical form via a reversible dehydration–hydration reaction. H...
K2CO3 is a promising salt for thermochemical heat storage. For a high performance, the thermochemica...
Thermal energy storage is receiving increased attention as the world transitions away from fossil fu...
K2CO3 is a promising salt for thermochemical heat storage. For a high performance, the thermochemica...
Salt hydrates have promising potential as heat storage materials by use of their hydration/dehydrati...
AbstractSalt hydrates have promising potential as heat storage materials by use of their hydration/d...
With construction of a thermochemical energy conversion prototype system to store solar heat, therma...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
We have experimentally determined the main thermodynamic properties of SrCl2, a potentially promisin...
International audienceWe studied the kinetics and mechanism of the dehydration reaction of calcium s...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
In this study the hydration/dehydration kinetics are studied of a thermochemical material (TCM), CaC...
Compared to other energy storage concepts, thermochemical energy storage stands out with high storag...
AbstractHydration and dehydration of Ca(OH)2/CaO, CaCl2 • 6 H2O/CaCl2 and MgCl2 • 6 H2O/MgCl2 • 2H2O...
Salt hydrates store solar energy in chemical form via a reversible dehydration–hydration reaction. H...
K2CO3 is a promising salt for thermochemical heat storage. For a high performance, the thermochemica...
Thermal energy storage is receiving increased attention as the world transitions away from fossil fu...
K2CO3 is a promising salt for thermochemical heat storage. For a high performance, the thermochemica...
Salt hydrates have promising potential as heat storage materials by use of their hydration/dehydrati...
AbstractSalt hydrates have promising potential as heat storage materials by use of their hydration/d...
With construction of a thermochemical energy conversion prototype system to store solar heat, therma...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
We have experimentally determined the main thermodynamic properties of SrCl2, a potentially promisin...
International audienceWe studied the kinetics and mechanism of the dehydration reaction of calcium s...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...