Microencapsulation of sodium nitrate (NaNO3) as phase change material for high temperature thermal energy storage aims to reduce costs related to metal corrosion in storage tanks. The goal of this work was to test in a prototype thermal energy storage tank (16.7 L internal volume) the thermal properties of NaNO3 microencapsulated in zinc oxide shells, and estimate the potential of NaNO3–ZnO microcapsules for thermal storage applications. A fast and scalable microencapsulation procedure was developed, a flow calorimetry method was adapted, and a template document created to perform tank thermal transfer simulation by the finite element method (FEM) was set in Microsoft Excel. Differential scanning calorimetry (DSC) and transient plane source...
NaNO3 has been selected as phase change material (PCM) due to its convenient melting and crystalliza...
International audienceUsing direct steam generation in concentrated solar power plant leads to the d...
Thermal energy storage is a major contributor to bridge the gap between energy demand (consumption) ...
The use of a latent heat storage system using phase change materials (PCMs) is an effective way of s...
Thermal energy storage systems with phase-change materials promise a high energy density for applica...
Thermal energy storage (TES) is one of the most attractive and cost effective solutions to the inter...
International audienceThermal energy storage seems to be the most promising way to improve concentra...
As the development of solar energy is getting advance from time to time, the concentration solar tec...
In this paper the results of material investigations of sodium nitrate (NaNO3) with a melting tempe...
Thermal energy storage (TES) has been one of the main research topics during the last decades. The ...
As the development of solar energy is getting advance from time to time, the solar concentration tec...
Thermal energy storage systems using phase change materials (PCMs) as latent heat storage are one of...
In this study, the temperature profile of the sodium nitrate phase change material NaNO3 is characte...
The energy storage capability of a suspension of Nano-Encapsulated Phase Change Material (NEPCM) nan...
Thermal energy storage is a key technology for reduced cost solar thermal power generation. This hig...
NaNO3 has been selected as phase change material (PCM) due to its convenient melting and crystalliza...
International audienceUsing direct steam generation in concentrated solar power plant leads to the d...
Thermal energy storage is a major contributor to bridge the gap between energy demand (consumption) ...
The use of a latent heat storage system using phase change materials (PCMs) is an effective way of s...
Thermal energy storage systems with phase-change materials promise a high energy density for applica...
Thermal energy storage (TES) is one of the most attractive and cost effective solutions to the inter...
International audienceThermal energy storage seems to be the most promising way to improve concentra...
As the development of solar energy is getting advance from time to time, the concentration solar tec...
In this paper the results of material investigations of sodium nitrate (NaNO3) with a melting tempe...
Thermal energy storage (TES) has been one of the main research topics during the last decades. The ...
As the development of solar energy is getting advance from time to time, the solar concentration tec...
Thermal energy storage systems using phase change materials (PCMs) as latent heat storage are one of...
In this study, the temperature profile of the sodium nitrate phase change material NaNO3 is characte...
The energy storage capability of a suspension of Nano-Encapsulated Phase Change Material (NEPCM) nan...
Thermal energy storage is a key technology for reduced cost solar thermal power generation. This hig...
NaNO3 has been selected as phase change material (PCM) due to its convenient melting and crystalliza...
International audienceUsing direct steam generation in concentrated solar power plant leads to the d...
Thermal energy storage is a major contributor to bridge the gap between energy demand (consumption) ...