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Updated: Dec 9, 2025

Development and Validation of Chromium Getters for Solid Oxide Fuel Cell Power Systems
Published on: May 26, 2019
Oxidation and electrical properties of chromium-iron alloys in a corrosive molten electrolyte environment
M Esmaily1, A N Mortazavi2, N Birbilis3
1Department of Materials Science and Engineering, Massachusetts Institute of Technology, Cambridge, USA. esmaily@mit.edu.
Abstract:
Chromium-iron (CrFe) binary alloys have recently been proposed to serve as the "inert" anode for molten oxide electrolysis (MOE). Herein, the effects of anodic polarization on physical and functional properties of CrFe anodes in the corrosive environment of MOE are studied via empirical observations and theoretical calculations. The findings indicate that the alloys form an inner chromia-alumina solid-solution covered by an MgCr2O4 spinel layer. A survey into the electrical properties of the detected oxides suggests that the layered oxide scale function as an efficient conductor of electricity at elevated temperature. The formation mechanism of the oxides is also investigated.
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