4.5 Article

Electrical conductivity and oxygen permeation properties of SrCoFeOx membranes

Journal

SOLID STATE IONICS
Volume 180, Issue 40, Pages 1633-1639

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.ssi.2009.11.004

Keywords

Mixed-conducting oxide membrane; Oxygen permeation; Strontium iron cobalt oxide

Funding

  1. National Science Foundation [CTS-0513366]
  2. NSF International Research and Education in Engineering (IREE) [CTS-0513366]
  3. Foundation for Industrial and Technological Research at the Norwegian Institute of Technology (SINTEF) in Oslo, Norway

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The total conductivity and oxygen permeation properties of dense SrCoFeOx membranes synthesized from the solid state method were studied in the temperature range of 700-900 degrees C. The Si-CoFeOx membranes consist of an intergrowth (Sr4Fe6-xCoxO13 +/-delta), perovskite (SrFe1-xCoxO3-delta), and spinel (Co3-xFexO4) phase. SrCoFeOx exhibits n-type and p-type conduction at low and high oxygen partial pressures, respectively, and has a total conductivity of 16.5 S/cm at 900 degrees C in air. The oxygen permeation fluxes for SrCoFeOx and SrFeCo0.5Ox membranes were measured with either an inert or carbon monoxide sweep gas. The oxygen permeation fluxes were higher through SrCoFeOx membranes than SrFeCo0.5Ox membranes and can be attributed to a difference in the amount and makeup of the perovskite phase present in each composition. The oxygen permeation fluxes with a carbon monoxide sweep gas were approximately two orders of magnitude larger than the fluxes measured with an inert sweep gas for both compositions. The large oxygen permeation fluxes observed with a carbon monoxide sweep are due to a higher driving force for oxygen transport and a reaction on the sweep side of the membrane that maintains a low oxygen partial pressure. (C) 2009 Elsevier B.V. All rights reserved.

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