Kelakuan Pengoksidaan Keluli Tahan Karat Berferit SUS430 dan Kesan Pemeruapan Spesies Cr Bergas kepada Permukaan Katod LSCF dalam Suhu Operasi Sel Fuel Oksida Pepejal

  • Aznam I
  • Joelle Mah C
  • Muchtar A
  • et al.
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Abstract

Oxidation of ferritic stainless steel SUS430-based interconnects in intermediate temperature solid oxide fuel cell (IT-SOFC) contributes to the formation of oxide scales containing volatile chromium (Cr) species around the component. In a long-term operation, Cr volatilization causes Cr poisoning on the cathode component, which is in contact with the SUS430 interconnect. La 0.6 Sr 0.4 Co 0.2 Fe 0.8 O 3−δ (LSCF) cathode is currently the best candidate for IT-SOFC cathode. This study aims to determine the effects of the long-term oxidation of SUS430 steel on volatile Cr species formation and to investigate the influence of Cr volatilization on the LSCF cathode performance. The results show that the oxidation of SUS430 steel for 200 h parabolically increased its weight due to oxide scale formation. The scale consists of two layers, namely, the spinel on top and the chromia layer, which does not affect the SUS430 conductivity. However, Cr deposition on the LSCF cathode surface causes the formation of SrCrO 4 and Cr 2 O 3 crystallites. This phenomenon reduces the catalytic activity and increases the electrical resistance and the activation energy due to the high amount of oxygen vacancies. Therefore, the mitigation of volatile Cr species is important in maintaining the long-term stability of IT-SOFCs.

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APA

Aznam, I., Joelle Mah, C. W., Muchtar, A., Baharuddin, N. A., Somalu, M. R., & Ghazali, M. J. (2019). Kelakuan Pengoksidaan Keluli Tahan Karat Berferit SUS430 dan Kesan Pemeruapan Spesies Cr Bergas kepada Permukaan Katod LSCF dalam Suhu Operasi Sel Fuel Oksida Pepejal. Sains Malaysiana, 48(4), 861–869. https://doi.org/10.17576/jsm-2019-4804-18

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