A Study on In-Situ Sintering of Ni-10 wt % Cr Anode for MCFC

Author:

Lee Dokyol,Kim Jungdo,Jo Kihoon

Publisher

The Electrochemical Society

Subject

Materials Chemistry,Electrochemistry,Surfaces, Coatings and Films,Condensed Matter Physics,Renewable Energy, Sustainability and the Environment,Electronic, Optical and Magnetic Materials

Reference5 articles.

1. Sintering with additives.

2. B. D. Cullity ,Elements of X-Ray Diffraction, 2nd ed., p. 507, Addison-Wesley, Boston (1978).

3. E. A. Brandes and G. B. Brook ,Smithells Metals Reference Book, 7th ed., p. 407 (Reed Publishing, Oxford, 1992).

4. On the high creep resistant morphology and its formation mechanism in Ni–10 wt.% Cr anodes for molten carbonate fuel cells

5. Preparation of creep-resistant Ni–5 wt.% Al anodes for molten carbonate fuel cells

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1. In situ electrolyte replenishment with atmospheric pressure-chemical/electrochemical vapour deposition for molten carbonate fuel cells;Chemical Engineering Journal;2023-11

2. Fuel cells – Molten carbonate fuel cell | Anodes;Reference Module in Chemistry, Molecular Sciences and Chemical Engineering;2023

3. Novel Fabrication of Porous Ni-5 wt.% Al Alloy Electrode Below the Melting Point of Aluminum;Science of Advanced Materials;2017-12-01

4. Fuel Cells Operating and Structural Features of MCFCs and SOFCs;Treatment of Biogas for Feeding High Temperature Fuel Cells;2016

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