Thermochemical heat storage in salt hydrates is a promising method to improve the solar fraction in the built environment. One of the most promising salt hydrates to be used as thermochemical material is potassium carbonate. In this study, the use of potassium carbonate in heat storage applications is investigated experimentally. The most important objective is to form a kinetic model for the de/re-hydration reaction of the material. In order to do so, it is crucial to understand the behavior of the salt when it reacts with water vapor. Reaction kinetics and mechanism are investigated for K2CO3, as one of the most promising materials. Characterization of the materials is carried out with combined Thermo-Gravimetric Analysis (TGA) and Differ...
Thermochemical energy storage using salt hydrates is a promising concept to bridge the gap between s...
Thermochemical heat storage in salt hydrates is a promising method to improve the solar fraction in ...
This work investigates the reactions occurring in K2CO3-H2O-CO2 under ambient CO2 pressures in tempe...
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...
The application of thermal energy storage using thermochemical heat storage materials is a promising...
Salt hydrates are promising candidates for the long-term thermochemical heat storage (TCES) in the b...
Potassium carbonate (K2 CO3 ) is a promising material for the long-term storage of renewable energy....
Thermochemical energy storage using salt hydrates is a promising concept to bridge the gap between s...
A series of 16 salt mixtures consisting of potassium carbonate (K2CO3) as the base salt and a second...
Potassium carbonate has recently been identified as a promising candidate for thermochemical energy ...
Thermochemical energy storage using salt hydrates is a promising concept to bridge the gap between s...
Thermochemical heat storage in salt hydrates is a promising method to improve the solar fraction in ...
This work investigates the reactions occurring in K2CO3-H2O-CO2 under ambient CO2 pressures in tempe...
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...
The application of thermal energy storage using thermochemical heat storage materials is a promising...
Salt hydrates are promising candidates for the long-term thermochemical heat storage (TCES) in the b...
Potassium carbonate (K2 CO3 ) is a promising material for the long-term storage of renewable energy....
Thermochemical energy storage using salt hydrates is a promising concept to bridge the gap between s...
A series of 16 salt mixtures consisting of potassium carbonate (K2CO3) as the base salt and a second...
Potassium carbonate has recently been identified as a promising candidate for thermochemical energy ...
Thermochemical energy storage using salt hydrates is a promising concept to bridge the gap between s...
Thermochemical heat storage in salt hydrates is a promising method to improve the solar fraction in ...
This work investigates the reactions occurring in K2CO3-H2O-CO2 under ambient CO2 pressures in tempe...