Potassium carbonate (K2 CO3 ) is a promising material for the long-term storage of renewable energy. A reactor vessel filled with K2 CO3 can potentially be used as a domestic heat battery. The hydration and dehydration reactions of salt hydrates in a reactor vessel are generally described using a one-process model, such as the ‘Arrhenius-f (α)’ model. However, this modeling approach cannot always be applied correctly. If the reaction does not proceed in a pseudo-steady state, and/or when nucleation and growth processes are simultaneously active during the transformation from an anhydrous to a hydrated state, the one-process modeling approach should not be applied. In this paper, it is investigated using simultaneous thermal analysis (STA) e...
Potassium carbonate is a promising salt for thermochemical heat storage. For an application mm-sized...
Potassium carbonate, K2CO3, has been identified as one of the most promising thermochemical storage ...
This work studied the reversible dehydration of potassium carbonate sesquihydrate (K2CO3·1.5H2O). Th...
Potassium carbonate (K2 CO3 ) is a promising material for the long-term storage of renewable energy....
Potassium carbonate (K2 CO3 ) is a promising material for the long-term storage of renewable energy....
Thermochemical heat storage in salt hydrates is a promising method to improve the solar fraction in ...
Thermochemical heat storage in salt hydrates is a promising concept to bridge the gap between supply...
Thermochemical energy storage using salt hydrates is a promising concept to bridge the gap between s...
Thermochemical energy storage using salt hydrates is a promising concept to bridge the gap between s...
K2CO3 is a promising salt for thermochemical heat storage. For a high performance, the thermochemica...
K2CO3 is a promising salt for thermochemical heat storage. For a high performance, the thermochemica...
Potassium carbonate is a promising salt for thermochemical heat storage. For an application mm-sized...
Potassium carbonate, K2CO3, has been identified as one of the most promising thermochemical storage ...
This work studied the reversible dehydration of potassium carbonate sesquihydrate (K2CO3·1.5H2O). Th...
Potassium carbonate (K2 CO3 ) is a promising material for the long-term storage of renewable energy....
Potassium carbonate (K2 CO3 ) is a promising material for the long-term storage of renewable energy....
Thermochemical heat storage in salt hydrates is a promising method to improve the solar fraction in ...
Thermochemical heat storage in salt hydrates is a promising concept to bridge the gap between supply...
Thermochemical energy storage using salt hydrates is a promising concept to bridge the gap between s...
Thermochemical energy storage using salt hydrates is a promising concept to bridge the gap between s...
K2CO3 is a promising salt for thermochemical heat storage. For a high performance, the thermochemica...
K2CO3 is a promising salt for thermochemical heat storage. For a high performance, the thermochemica...
Potassium carbonate is a promising salt for thermochemical heat storage. For an application mm-sized...
Potassium carbonate, K2CO3, has been identified as one of the most promising thermochemical storage ...
This work studied the reversible dehydration of potassium carbonate sesquihydrate (K2CO3·1.5H2O). Th...