Chloride based salt hydrates are promising materials for seasonal heat storage. However, hydrolysis, a side reaction, deteriorates, their cycle stability. To improve the kinetics and durability, we have investigated the optimum operating conditions of a chemical mixture of CaCl2 and MgCl2 hydrates. In this study, we apply a GGA-DFT to gain insight into the various hydrates of CaMg2Cl6. We have obtained the structural properties, atomic charges and vibrational frequencies of CaMg2Cl6 hydrates. The entropic contribution and the enthalpy change are quantified from ground state energy and harmonic frequencies. Subsequently, the change in the Gibbs free energy of thermolysis was obtained under a wide range of temperature and pressure. The equili...
Mixed salt hydrates recently proved to be promising potential candidates for long-term heat storage....
\u3cp\u3eMixed salt hydrates recently proved to be promising potential candidates for long-term heat...
Chloride-based salt hydrates, MgCl2·nH2O and CaCl2·nH2O (n = 0,1,2,4,6), are promising materials for...
Chloride based salt hydrates are promising materials for seasonal heat storage.\u3cbr/\u3eHowever, h...
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 ...
Salt hydrates store solar energy in chemical form via a reversible dehydration–hydration reaction. H...
Magnesium chloride hydrates are characterized as promising energy storage materials in the builtenvi...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
In order to move towards a sustainable energy economy, a reliable energy storage technology is neces...
\u3cp\u3eChloride-based salt hydrates form a promising class of thermochemical materials (TCMs), hav...
MgCl2 hydrates are considered as high-potential candidates for seasonal heat storage materials. Thes...
Mixed salt hydrates recently proved to be promising potential candidates for long-term heat storage....
\u3cp\u3eMixed salt hydrates recently proved to be promising potential candidates for long-term heat...
Chloride-based salt hydrates, MgCl2·nH2O and CaCl2·nH2O (n = 0,1,2,4,6), are promising materials for...
Chloride based salt hydrates are promising materials for seasonal heat storage.\u3cbr/\u3eHowever, h...
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 ...
Salt hydrates store solar energy in chemical form via a reversible dehydration–hydration reaction. H...
Magnesium chloride hydrates are characterized as promising energy storage materials in the builtenvi...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
In order to move towards a sustainable energy economy, a reliable energy storage technology is neces...
\u3cp\u3eChloride-based salt hydrates form a promising class of thermochemical materials (TCMs), hav...
MgCl2 hydrates are considered as high-potential candidates for seasonal heat storage materials. Thes...
Mixed salt hydrates recently proved to be promising potential candidates for long-term heat storage....
\u3cp\u3eMixed salt hydrates recently proved to be promising potential candidates for long-term heat...
Chloride-based salt hydrates, MgCl2·nH2O and CaCl2·nH2O (n = 0,1,2,4,6), are promising materials for...