It is well known that the efficiency of thermodynamic solar plants increases with working temperature. At present the main limit to temperature upscaling is the capability of the absorber to withstand high temperatures. The ideal solar absorber works at high temperatures, has a low thermal emissivity and a high absorptivity in the solar spectral range. This paper reports on the high-temperature emissivity characterization of ceramic zirconium carbide samples. The investigation has been performed for samples of different chemical composition
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Solar thermal receivers collect and can store concentrated solar radiation using solid particles. So...
An efficiency improvement of concentrating solar power systems relies on a significant increase of t...
We report on the preparation, room temperature spectral reflectance and high-temperature thermal emi...
We report on the preparation, room temperature spectral reflectance and high-temperature thermal emi...
In this work, for the first time, we studied the temperature-dependent spectral emittance of highly ...
An efficiency improvement of concentrating solar power systems relies on a significant increase of t...
An efficiency improvement of concentrating solar power systems relies on a significant increase of t...
AbstractConcentrating Solar Power (CSP) is considered to be one of the most promising and sustainabl...
AbstractConcentrating Solar Power (CSP) is considered to be one of the most promising and sustainabl...
Exploring the spectrally selective absorbers with high optical performance and excellent thermal sta...
Ultra-high temperature ceramic matrix composites, UHTCMCs, are a new class of composites which combi...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Besides ultra-refractoriness and favorable mechanical and chemical characteristics, carbides of earl...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Solar thermal receivers collect and can store concentrated solar radiation using solid particles. So...
An efficiency improvement of concentrating solar power systems relies on a significant increase of t...
We report on the preparation, room temperature spectral reflectance and high-temperature thermal emi...
We report on the preparation, room temperature spectral reflectance and high-temperature thermal emi...
In this work, for the first time, we studied the temperature-dependent spectral emittance of highly ...
An efficiency improvement of concentrating solar power systems relies on a significant increase of t...
An efficiency improvement of concentrating solar power systems relies on a significant increase of t...
AbstractConcentrating Solar Power (CSP) is considered to be one of the most promising and sustainabl...
AbstractConcentrating Solar Power (CSP) is considered to be one of the most promising and sustainabl...
Exploring the spectrally selective absorbers with high optical performance and excellent thermal sta...
Ultra-high temperature ceramic matrix composites, UHTCMCs, are a new class of composites which combi...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Besides ultra-refractoriness and favorable mechanical and chemical characteristics, carbides of earl...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Solar thermal receivers collect and can store concentrated solar radiation using solid particles. So...