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High-flux photodegradation of solar materials: Stainless steel

Author

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  • Mesarwi, A.
  • Sun, Y.
  • Ignatiev, A.

Abstract

The high-flux (≳ 1 MW/m2), elevated temperature (≳ 400 °C) stability of types 304 and 410 stainless steel has been investigated by the application of surface-sensitive probes. Significant photo-enhancement of the oxidation of the stainless steel has been observed with measured oxide thicknesses up to 1000% greater for high-flux irradiated samples than (i.r.) oven-heated samples. Photo-induced reduction of the protective Cr2O3 surface oxide is believed to be a significant cause of the photo-enhanced oxidation.

Suggested Citation

  • Mesarwi, A. & Sun, Y. & Ignatiev, A., 1987. "High-flux photodegradation of solar materials: Stainless steel," Energy, Elsevier, vol. 12(3), pages 269-275.
  • Handle: RePEc:eee:energy:v:12:y:1987:i:3:p:269-275
    DOI: 10.1016/0360-5442(87)90085-5
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    Cited by:

    1. Lucía Arribas & José González-Aguilar & Manuel Romero, 2018. "Solar-Driven Thermochemical Water-Splitting by Cerium Oxide: Determination of Operational Conditions in a Directly Irradiated Fixed Bed Reactor," Energies, MDPI, vol. 11(9), pages 1-15, September.

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