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  4. High-purity oxygen production by a dead-end Ba0.5Sr0.5Co0.8Fe0.2O3-delta tube membrane
 
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2012
Journal Article
Title

High-purity oxygen production by a dead-end Ba0.5Sr0.5Co0.8Fe0.2O3-delta tube membrane

Abstract
High-purity oxygen was produced by dead-end Ba 0.5Sr 0.5Co 0.8Fe 0.2O 3-delta (BSCF) tube membranes which were sealed by a reaction-diffusion sintering process. First, phase stability of BSCF membrane in a pure oxygen atmosphere - as it is present on the permeate side of the membrane - was studied at 750 and 950 °C, respectively. After the identification of stable operation conditions of BSCF membranes, we studied the oxygen permeation at 950 °C using dead-end BSCF tubes (1 cm outer diameter, 1 mm wall thickness) in (i) a pressure-driven process, (ii) a vacuum process, and (iii) combining both techniques. In all cases, a high oxygen purity of almost 100 vol.% can be obtained at operation temperatures >= 850 °C. The oxygen permeation flux, the oxygen recovery, and the oxygen ionic con ductivity were investigated. It was found that - for the same oxygen partial pressure difference - the oxygen permeation flux in the vacuum process is significantly higher than that in the pressure-driven process at all investigated temperatures. Moreover, in all cases, oxygen permeation and oxygen ionic conductivity can be described by the Wagner theory for bulk diffusion of oxygen ions as rate-limiting step with the logarithmic ratio of the oxygen partial pressures on feed and permeate sides as driving force.
Author(s)
Liang, F.
Jiang, H.
Luo, H.
Kriegel, R.
Caro, J.
Journal
Catalysis Today  
Conference
International Conference on Catalysis in Membrane Reactors (ICCMR) 2011  
DOI
10.1016/j.cattod.2011.12.016
Language
English
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
Keyword(s)
  • BSCF

  • dead-end membrane

  • oxygen permeation

  • oxygen transporting membrane

  • perovskite

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