4.7 Article

Measurement of high temperature emissivity and photothermal conversion efficiency of TiAlC/TiAlCN/TiAlSiCN/TiAlSiCO/TiAlSiO spectrally selective coating

Journal

SOLAR ENERGY MATERIALS AND SOLAR CELLS
Volume 171, Issue -, Pages 123-130

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.solmat.2017.06.057

Keywords

High temperature emissivity; Solar absorber coating; FTIR; Photothermal conversion

Funding

  1. DST, New Delhi [U-1-144]
  2. Programme Investissements d'avenir of the Agence Nationale de la Recherche of the French State [ANR-10-EQPX-49-SOCRATE, ANR-10-LABX-22-01-SOLSTICE]
  3. CSIR

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A spectrally selective TiAIC/TiAlCN/TiAlSiCN/TiAlSiCO/TiAlSiO coating was deposited on stainless steel substrate by unbalanced magnetron sputtering system. Each individual layer of the tandem absorber was optimized by varying the reactive gas flow rates (C2H2, N-2 and O-2) and target power densities (Ti, Al and Si). The optimized tandem absorber shows a solar absorptance of 0.960 and an emittance of 0.15 at 82 degrees C, measured using solar spectrum reflectometer and emissometer, respectively. In order to study the optical properties of the deposited tandem absorber at high operating temperatures the reflectance spectra of the tandem absorber were measured at temperatures ranging from 80 degrees C to 500 degrees C by UV Vis NIR spectrophotometer and FTIR spectrometers. The reflectance spectra of the as-deposited sample and after high temperature reflectance measurements did not show any significant changes. The thermal emittance of the tandem absorber at high temperatures (80-500 degrees C) was studied in detail. At the temperature of 200 degrees C, 300 degrees C, 400 degrees C and 500 degrees C the tandem absorber shows the emittance of 0.152-0.157, 0.181-0.19, 0.214-0.246 and 0.251-0.275, respectively with an absorptance of similar to 0:930. These results show the good selectivity of the tandem absorber even at high operating temperatures (e.g., 500 degrees C) with a photothermal conversion efficiency of 88%, thus demonstrating that the tandem absorber is suitable for solar thermal power generation applications. Reflectance and roughness data of the absorber coating post annealing in air up to 600 degrees C for 2 h, carried out independently, corroborated the present results.

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