In this study, the performance of three nano-composite energy storage absorbents; Vermiculite-CaCl2 (SIM-3a), Vermiculite-CaCl2-LiNO3 (SIM-3f), and the desiccant Zeolite 13X were experimentally investigated for suitability to domestic scale thermal energy storage. A novel 3 kWh open thermochemical reactor consisting of new meshed tube air diffusers was built to experimentally examine performance. The results were compared to those obtained using a previously developed flatbed experimental reactor. SIM-3a has the best cyclic behaviour and thermal performance. It was found that 0.01 m3 of SIM-3a can provide an average temperature lift of room air, ΔT = 20 °C over 180 min whereas for SIM-3f, ΔT < 15 °C was achieved. Zeolite provided high sorp...
\u3cbr/\u3eReplacing the use of fossil fuel by solar energy, as one of the most promising sustainabl...
Thermochemical energy storage (TCES) is an emerging technology promising for domestic applications. ...
\u3cp\u3eSorption thermal energy storage is a promising concept for seasonal heat storage. Advantage...
In this study, the performance of three nano-composite energy storage absorbents; Vermiculite-CaCl2 ...
This study utilised vermiculite as a matrix to explore various impregnation methods for synthesising...
High-performance renewable energy technologies are desired to meet the enormous demand during the cl...
Industrial processes and the building sector (e.g., for space and water heating) are responsible for...
Heating and cooling account nearly 60% of world total energy consumption and highly depending of con...
Recent research into thermochemical storage (TCS) materials has highlighted their promising potentia...
Thermochemical Energy Storage (TCES) materials can be used to store and release thermal energy durin...
AbstractThe potential of an open sorption storage process for space heating and hot water was evalua...
The cost of space heating is dependent on electricity prices because of its significant utilization ...
At this moment, the global energy consumption in buildings is around 40% of the total energy consump...
A sorption thermal energy storage (TES) device for domestic heating is presented in this article. Th...
\u3cbr/\u3eReplacing the use of fossil fuel by solar energy, as one of the most promising sustainabl...
Thermochemical energy storage (TCES) is an emerging technology promising for domestic applications. ...
\u3cp\u3eSorption thermal energy storage is a promising concept for seasonal heat storage. Advantage...
In this study, the performance of three nano-composite energy storage absorbents; Vermiculite-CaCl2 ...
This study utilised vermiculite as a matrix to explore various impregnation methods for synthesising...
High-performance renewable energy technologies are desired to meet the enormous demand during the cl...
Industrial processes and the building sector (e.g., for space and water heating) are responsible for...
Heating and cooling account nearly 60% of world total energy consumption and highly depending of con...
Recent research into thermochemical storage (TCS) materials has highlighted their promising potentia...
Thermochemical Energy Storage (TCES) materials can be used to store and release thermal energy durin...
AbstractThe potential of an open sorption storage process for space heating and hot water was evalua...
The cost of space heating is dependent on electricity prices because of its significant utilization ...
At this moment, the global energy consumption in buildings is around 40% of the total energy consump...
A sorption thermal energy storage (TES) device for domestic heating is presented in this article. Th...
\u3cbr/\u3eReplacing the use of fossil fuel by solar energy, as one of the most promising sustainabl...
Thermochemical energy storage (TCES) is an emerging technology promising for domestic applications. ...
\u3cp\u3eSorption thermal energy storage is a promising concept for seasonal heat storage. Advantage...