Evaluation of Corrosion Resistance of Coated and Uncoated Stainless-Steel Separators at Cathode Side for Molten Carbonate Fuel Cell

  • Kim Byung-Il
    Department of Metallurgical Engineering, Sunchon National University
  • Park Hyeoung-Ho
    KIRaM (Korea Research Institute of Rare Metals)
  • Lee Min-Ho
    Department of Metallurgical Engineering, Kwangyang College
  • Goto Shoji
    Department of Materials Science and Engineering, Faculty of Engineering and Resource Science, Akita University
  • Aso Setsuo
    Department of Materials Science and Engineering, Faculty of Engineering and Resource Science, Akita University
  • Komatsu Yoshinari
    Department of Materials Science and Engineering, Faculty of Engineering and Resource Science, Akita University

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Abstract

In order to evaluate the corrosion resistance of a cathode-side separator for a molten carbonate fuel cell (MCFC), SUS316 and SACC-SUS316 (chromium and aluminum were simultaneously deposited by diffusion into SUS316 austenitic stainless steel substrate using the pack-cementation process) were used as the separator materials. In the case of SUS316, corrosion proceeded via three steps: the formation of a corrosion product until the corrosion product becomes stable; the protection against corrosion until breakaway occurs; and the advancement of corrosion after breakaway. Since SUS316 showed a high corrosion rate in the cathode environment, it would be impossible to use it as a separator without suitable surface modification because of the occurrence of severe stability problems of the cell during long-term operation. In contrast, SACC-SUS316 showed higher corrosion resistance than the present separator material, SUS316. No corrosion was observed on SACC-SUS316 after 480 h at 923 K. Therefore, this material is thought to be very useful as an alternative separator at the cathode side for MCFC in the future.

Journal

  • MATERIALS TRANSACTIONS

    MATERIALS TRANSACTIONS 43 (3), 593-600, 2002

    The Japan Institute of Metals and Materials

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