(Institución)
 
 

Docu-menta > Energía > Artículos de Energía >

Por favor, use este identificador para citar o enlazar este ítem: http://documenta.ciemat.es/handle/123456789/3962

Título : Performance improvement of CSP particle receivers by depositing spinel absorber coatings
Autor : Farchado, Meryem
San Vicente, Gema
Barandica, Naia
Sutter, Florian
Alkan, Gözde
Sánchez-Señoran, Daniel
Morales, Angel
Palabras clave : Solid particle technology
Spinel coating
Solar absorber
Abrasion resistance
Thermal-stability
Dip-coating
CSP
Fecha de publicación : mar-2024
Editorial : Solar Energy Materials and Solar Cells
Citación : Meryem Farchado, Gema San Vicente, Naia Barandica, Florian Sutter, Gözde Alkan, Daniel Sánchez-Señorán, Ángel Morales, Performance improvement of CSP particle receivers by depositing spinel absorber coatings, Solar Energy Materials and Solar Cells, Volume 266, 2024, 112681, ISSN 0927-0248, https://doi.org/10.1016/j.solmat.2023.112681
Resumen : The challenging development/modification of particles to meet the requirements of thermal stability, high absorptance and mechanical resistance with minimal economical cost is a key point to attain for the next particle receivers of concentrated solar power plants. The properties of the particles influence the performance of the system, since the concentrated solar radiation is absorbed and stored in these solid materials. In this work, resulting from the studies carried out within the HORIZON 2020 COMPASsCO2 project, the deposition of black-coloured transition-metal oxides with spinel-like structure coatings on different particles is proven. Five different particles (state-of-the-art and innovative) developed by Saint-Gobain have been coated, studied and compared. The coating deposition was adapted to the dip-coating methodology, ensuring high and good reproducibility. The composition of solid particles as well as the composition of the precursor solution, the curing methodology and the number of deposited spinel layers demonstrate that they have a great influence on the solar absorptance value and the abrasion resistance. Therefore, it is essential to find the perfect balance between all these different parameters in order to achieve the best performance of the particles. The addition of silica nanoparticles in the precursor solution provides rougher layers with enhanced absorptance, up to 0.980, on newly developed particles with excellent thermal stability and abrasion resistance.
URI : https://doi.org/10.1016/j.solmat.2023.112681
http://documenta.ciemat.es/handle/123456789/3962
ISSN : 0927-0248
Aparece en las colecciones: Artículos de Energía

Ficheros en este ítem:

Fichero Descripción Tamaño Formato
Performance improvement of CSP particle receivers by depositing spinel absorber coatings.pdfArticulo Principal12.3 MBAdobe PDFVisualizar/Abrir
1-s2.0-S0927024823005020-mmc1 particles.docxMaterial suplementario1.29 MBMicrosoft Word XMLVisualizar/Abrir
View Statistics

Los ítems de Docu-menta están protegidos por una Licencia Creative Commons, con derechos reservados.

 

Información y consultas: documenta@ciemat.es | Documento legal