4.7 Article

Pd-Pt/YSZ composite membranes for hydrogen separation from synthetic water-gas shift streams

期刊

JOURNAL OF MEMBRANE SCIENCE
卷 437, 期 -, 页码 257-264

出版社

ELSEVIER
DOI: 10.1016/j.memsci.2013.02.056

关键词

Fabricating palladium-platinum membranes; Hydrogen separation; Water-gas shift reaction; Electroless deposition; Palladium-platinum alloy

资金

  1. Department of Energy Advanced Hydrogen Transport Membranes for Coal Gasification Program [DE-FE0004908]
  2. Praxair Inc.
  3. Post-Doctoral Fellowship from the Colorado Center for Biorefining and Biofuels

向作者/读者索取更多资源

Palladium-platinum (Pd-Pt) alloy membranes have been fabricated by sequential, electroless deposition onto porous yttria-stablized zirconia supports manufactured by Praxair, Inc. Membranes were synthesized with thicknesses of 4-12 mu m that contained up to 27 wt% Pt. Pd-Pt alloy membranes had lower pure-gas hydrogen flux compared with pure Pd membranes of equal thickness. However, when tested at 673 K under an identical synthetic water-gas shift feed gas mixture composed of H-2, H2O, CO2, and CO at 689.5 kPa total pressure, the Pd-Pt alloy membranes had over 25% higher hydrogen fluxes than a pure Pd membrane of similar thickness. Membrane films were analyzed after testing with SEM, EDS, and ICP-AES to corroborate membrane thickness and alloy compositions estimated by mass gain. SEM thickness estimates on membrane cross sections were similar to those estimated by mass gain. ICP-AES analysis was performed on two membranes and confirmed the composition estimated by gravimetric analysis. In five of six membranes the film composition estimated by gravimetric analysis was consistent with the surface composition estimated by EDS which indicated that the membranes had been adequately annealed. (c) 2013 Elsevier B.V. All rights reserved.

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