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Sealant research for solid oxide fuel cells

Author: Hash, M.C.; Krumpelt, M.; Bloom, I.; Dorris, S.E.; Argonne National Lab.; United States. Department of Energy.; United States. Department of Energy. Office of Scientific and Technical Information.
Publisher: Washington, D.C. : United States. Dept. of Energy ; Oak Ridge, Tenn. : Distributed by the Office of Scientific and Technical Information, U.S. Dept. of Energy, 1992.
Edition/Format:   eBook : Document : Conference publication : National government publication : EnglishView all editions and formats
Database:WorldCat
Summary:
The objective of this work is to develop sealing materials for solid oxide fuels cells (SOFCs). A suitable sealant must form strong, dense bonds with SOFC components, be chemically and mechanically compatible with the components, be stable at 1000{sup degrees}C in the operating environment of the SOFC (H² and H²O on the anode side, O₂ on the cathode side), and must be nonconductive.
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Material Type: Conference publication, Document, Government publication, National government publication, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Hash, M.C.; Krumpelt, M.; Bloom, I.; Dorris, S.E.; Argonne National Lab.; United States. Department of Energy.; United States. Department of Energy. Office of Scientific and Technical Information.
OCLC Number: 727246755
Notes: Published through the Information Bridge: DOE Scientific and Technical Information.
06/01/1992.
"Anl/cp-76387."
"Conf-920748--3."
"DE92019044."
US Department of Energy contractors review meeting on fuel cells, Morgantown, WV (United States), 14-15 Jul 1992.
Hash, M.C.; Krumpelt, M.; Bloom, I.; Dorris, S.E.
Description: pages (6 pages) : digital, PDF file.

Abstract:

The objective of this work is to develop sealing materials for solid oxide fuels cells (SOFCs). A suitable sealant must form strong, dense bonds with SOFC components, be chemically and mechanically compatible with the components, be stable at 1000{sup degrees}C in the operating environment of the SOFC (H² and H²O on the anode side, O₂ on the cathode side), and must be nonconductive.

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