The availability of Thermal Energy Storage systems in Concentrated Solar Power plants makes them suitable to handle the gap between energy supply and power demand. Increasing the total thermal energy storage capacity of the Thermal Energy Storage materials used is of interest to improve their efficiency. In this work the thermal energy storage of the so called solar salt (60% NaNO3 - 40% KNO3) was improved by adding a phase change material composed of Al-Cu alloy nanoencapsulated with an aluminium oxide layer naturally formed when exposed to oxygen. The resistance of the oxide shell to thermal cycling up to 570 °C and its compatibility with the molten salt were proved. The specific heat and the total thermal energy storage were evaluated at...
Concentrating solar power (CSP) plants have been widely commercialized internationally for generatin...
Molten salts (MSs) are known for their advantages, such as being cheap, abundant in supply and can b...
HITEC salt (40 wt. % NaNO2, 7 wt. % NaNO3, 53 wt. % KNO3) with a melting temperature of about 142 °C...
The availability of Thermal Energy Storage systems in Concentrated Solar Power plants makes them sui...
The thermal efficiency of concentrated solar power (CSP) system depends on the maximum operating tem...
Concentrated Solar Power (CSP) technology has witnessed substantial growth, with forecasts predictin...
Cost-effective energy storage plays a critical role in transitioning towards a low-carbon society. E...
Molten salt has been widely used in latent heat thermal energy storage (LHTES) system, which can be ...
Thermal energy storage (TES) is extremely important in concentrated solar power (CSP) plants since i...
195 p.Thermal energy storage (TES) is considered as a vital component for concentrated solar power (...
Specific heat is a key thermal property in energy systems and is directly linked with heat storage a...
Thermal energy storage (TES) system is an essential component of any concentrating solar thermal pow...
The emphasis on exploiting solar power has efficaciously engaged the concentrated solar power (CSP) ...
The research in the field of the nanofluids has experienced noticeable advances since its discovery ...
The desire to increase the efficiency of existing renewable energy sources has been thoroughly resea...
Concentrating solar power (CSP) plants have been widely commercialized internationally for generatin...
Molten salts (MSs) are known for their advantages, such as being cheap, abundant in supply and can b...
HITEC salt (40 wt. % NaNO2, 7 wt. % NaNO3, 53 wt. % KNO3) with a melting temperature of about 142 °C...
The availability of Thermal Energy Storage systems in Concentrated Solar Power plants makes them sui...
The thermal efficiency of concentrated solar power (CSP) system depends on the maximum operating tem...
Concentrated Solar Power (CSP) technology has witnessed substantial growth, with forecasts predictin...
Cost-effective energy storage plays a critical role in transitioning towards a low-carbon society. E...
Molten salt has been widely used in latent heat thermal energy storage (LHTES) system, which can be ...
Thermal energy storage (TES) is extremely important in concentrated solar power (CSP) plants since i...
195 p.Thermal energy storage (TES) is considered as a vital component for concentrated solar power (...
Specific heat is a key thermal property in energy systems and is directly linked with heat storage a...
Thermal energy storage (TES) system is an essential component of any concentrating solar thermal pow...
The emphasis on exploiting solar power has efficaciously engaged the concentrated solar power (CSP) ...
The research in the field of the nanofluids has experienced noticeable advances since its discovery ...
The desire to increase the efficiency of existing renewable energy sources has been thoroughly resea...
Concentrating solar power (CSP) plants have been widely commercialized internationally for generatin...
Molten salts (MSs) are known for their advantages, such as being cheap, abundant in supply and can b...
HITEC salt (40 wt. % NaNO2, 7 wt. % NaNO3, 53 wt. % KNO3) with a melting temperature of about 142 °C...