Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high storage capacity and fast kinetics. In the charging cycles of these hydrates however hydrolysis might appear along with dehydration. The HCl produced during the hydrolysis degrades and corrodes the storage system. Our GGA-DFT results show that the enthalpy charge during proton formation (an important step in hydrolysis) is much higher for CaCl2·2H2O (33.75 kcal/mol) than for MgCl2·2H2O (19.55 kcal/mol). This is a strong indicator that hydrolysis can be minimized by appropriate chemical mixing of CaCl2 and Mg Cl2 hydrates, which is also confirmed by recent experimental studies. GGA-DFT calculations were performed to obtain and analyze the opti...
Chloride-based salt hydrates, MgCl2·nH2O and CaCl2·nH2O (n = 0,1,2,4,6), are promising materials for...
MgCl2 hydrates are considered as high-potential candidates for seasonal heat storage materials. Thes...
\u3cp\u3eMixed salt hydrates recently proved to be promising potential candidates for long-term heat...
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 ...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
\u3cp\u3eChloride-based salt hydrates form a promising class of thermochemical materials (TCMs), hav...
Salt hydrates store solar energy in chemical form via a reversible dehydration–hydration reaction. H...
Chloride based salt hydrates are promising materials for seasonal heat storage. However, hydrolysis,...
In order to move towards a sustainable energy economy, a reliable energy storage technology is neces...
Magnesium chloride hydrates are characterized as promising energy storage materials in the builtenvi...
Mixed salt hydrates recently proved to be promising potential candidates for long-term heat storage....
Chloride-based salt hydrates, MgCl2·nH2O and CaCl2·nH2O (n = 0,1,2,4,6), are promising materials for...
MgCl2 hydrates are considered as high-potential candidates for seasonal heat storage materials. Thes...
\u3cp\u3eMixed salt hydrates recently proved to be promising potential candidates for long-term heat...
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 ...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
\u3cp\u3eChloride-based salt hydrates form a promising class of thermochemical materials (TCMs), hav...
Salt hydrates store solar energy in chemical form via a reversible dehydration–hydration reaction. H...
Chloride based salt hydrates are promising materials for seasonal heat storage. However, hydrolysis,...
In order to move towards a sustainable energy economy, a reliable energy storage technology is neces...
Magnesium chloride hydrates are characterized as promising energy storage materials in the builtenvi...
Mixed salt hydrates recently proved to be promising potential candidates for long-term heat storage....
Chloride-based salt hydrates, MgCl2·nH2O and CaCl2·nH2O (n = 0,1,2,4,6), are promising materials for...
MgCl2 hydrates are considered as high-potential candidates for seasonal heat storage materials. Thes...
\u3cp\u3eMixed salt hydrates recently proved to be promising potential candidates for long-term heat...