Multi-Scale Femtosecond-Laser Texturing for Photothermal Efficiency Enhancement on Solar Absorbers Based on TaB2 Ceramics

Author:

Sani Elisa1ORCID,Sciti Diletta2,Failla Simone2ORCID,Melandri Cesare2,Bellucci Alessandro3ORCID,Orlando Stefano4ORCID,Trucchi Daniele M.3ORCID

Affiliation:

1. National Institute of Optics, National Research Council (CNR-INO), Largo E. Fermi, 6, I-50125 Florence, Italy

2. Institute of Science, Technology and Sustainability for Ceramics, National Research Council (CNR-ISSMC), (Former CNR-ISTEC), Via Granarolo 64, I-48018 Faenza, Italy

3. Institute of Structure of Matter, National Research Council (CNR-ISM), Montelibretti Section, Via Salaria km 29.300, I-00015 Monterotondo Scalo, Italy

4. Institute of Structure of Matter, National Research Council (CNR-ISM), Tito Scalo Section, Zona Industriale, I-85050 Tito, Italy

Abstract

Tantalum boride is an ultra-refractory and ultra-hard ceramic known so far for its favorable high-temperature thermo-mechanical properties and also characterized by a low spectral emittance, making it interesting for novel high-temperature solar absorbers for Concentrating Solar Power. In this work, we investigated two types of TaB2 sintered products with different porosities, and on each of them, we realized four femtosecond laser treatments differing in the accumulated laser fluence. The treated surfaces were then characterized by SEM-EDS, roughness analysis, and optical spectrometry. We show that, depending on laser processing parameters, the multi-scale surface textures produced by femtosecond laser machining can greatly increase the solar absorptance, while the spectral emittance increase is significantly lower. These combined effects result in increased photothermal efficiency of the absorber, with interesting perspectives for the application of these ceramics in Concentrating Solar Power and Concentrating Solar Thermal. To the best of our knowledge, this is the first demonstration of successful photothermal efficiency enhancement of ultra-hard ceramics using laser machining.

Funder

Network 4 Energy-Sustainable Transition—NEST

European Union—NextGenerationEU

Ministero dell’Università e della Ricerca

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

Reference36 articles.

1. Thonig, R., and Lilliestam, J. (2023, May 07). Concentrating Solar Technology Policy Should Encourage High Temperatures and Modularity to Enable Spillovers, AIP Conf. Proc., Available online: https://www.researchgate.net/publication/355154844.

2. (2022). World Energy Outlook 2021, International Energy Agency.

3. (2012). Standard Tables for Reference Solar Spectral Irradiances: Direct Normal and Hemispherical on 37° Tilted Surface. Active Standard ASTM G173 (Standard No. ASTM G173-03).

4. Optimization and preparation of Pt–Al2O3 double cermet as selective solar absorber coatings;Nuru;J. Alloys Compd.,2016

5. Thin film coatings in solar—Thermal power systems;Peterson;J. Vac. Sci. Technol.,1975

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