Salt hydrates have promising potential as heat storage materials by use of their hydration/dehydration reaction. These hydration/dehydration reactions are studied in this paper for CuCl2, CuSO4, MgCl2 and MgSO4. During a hydration/dehydration reaction, the salt shrinks and expands as a result of the differences in densities of the phases. As a result, after the first dehydration cycle, the crystal is fractured into a pseudomorphic state that releases the water molecules more easily. The effect of fracturing is larger in case of hydrates with larger volumetric changes. In this study the performance of hydrates during cyclic loading is related to the pore water production and volume variations. On the basis of such data, it is concluded that ...
Magnesium sulfate hepta hydrate (MgSO4.7H2O) was studied as possible thermochemical material for sea...
We have experimentally determined the main thermodynamic properties of SrCl2, a potentially promisin...
We have experimentally determined the main thermodynamic properties of SrCl2, a potentially promisin...
AbstractSalt hydrates have promising potential as heat storage materials by use of their hydration/d...
Salt hydrates have promising potential as heat storage materials by use of their hydration/dehydrati...
The solid-state hydration of salts has gained particular interest within the frame of thermochemical...
Salt hydrates have the potential to be used in heat storage as both phase-change materials (PCMs) a...
AbstractThe mechanism and the kinetics of hydration reactions are important for the application of a...
The solid-state hydration of salts has gained particular interest within the frame of thermochemical...
AbstractHydration and dehydration of Ca(OH)2/CaO, CaCl2 • 6 H2O/CaCl2 and MgCl2 • 6 H2O/MgCl2 • 2H2O...
A literature review is performed in order to collect and analyse the thermodynamic data of an utmost...
Mixed salt hydrates recently proved to be promising potential candidates for long-term heat storage....
Salt hydrates store solar energy in chemical form via a reversible dehydration–hydration reaction. H...
Magnesium sulfate hepta hydrate (MgSO4.7H2O) was studied as possible thermochemical material for sea...
We have experimentally determined the main thermodynamic properties of SrCl2, a potentially promisin...
We have experimentally determined the main thermodynamic properties of SrCl2, a potentially promisin...
AbstractSalt hydrates have promising potential as heat storage materials by use of their hydration/d...
Salt hydrates have promising potential as heat storage materials by use of their hydration/dehydrati...
The solid-state hydration of salts has gained particular interest within the frame of thermochemical...
Salt hydrates have the potential to be used in heat storage as both phase-change materials (PCMs) a...
AbstractThe mechanism and the kinetics of hydration reactions are important for the application of a...
The solid-state hydration of salts has gained particular interest within the frame of thermochemical...
AbstractHydration and dehydration of Ca(OH)2/CaO, CaCl2 • 6 H2O/CaCl2 and MgCl2 • 6 H2O/MgCl2 • 2H2O...
A literature review is performed in order to collect and analyse the thermodynamic data of an utmost...
Mixed salt hydrates recently proved to be promising potential candidates for long-term heat storage....
Salt hydrates store solar energy in chemical form via a reversible dehydration–hydration reaction. H...
Magnesium sulfate hepta hydrate (MgSO4.7H2O) was studied as possible thermochemical material for sea...
We have experimentally determined the main thermodynamic properties of SrCl2, a potentially promisin...
We have experimentally determined the main thermodynamic properties of SrCl2, a potentially promisin...