Oxygen transport membranes: dense ceramic membranes for power plant applications

Smart, S., Diniz da Costa, J. C., Baumann, S. and Meulenberg, W. A. (2011). Oxygen transport membranes: dense ceramic membranes for power plant applications. In Angelo Basile and Suzana Pereira Nunes (Ed.), Advance membrane science and technology for sustainable energy and environmental applications (pp. 255-294) Cambridge , United Kingdom: Woodhead Publishing.

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Name Description MIMEType Size Downloads
Author Smart, S.
Diniz da Costa, J. C.
Baumann, S.
Meulenberg, W. A.
Title of chapter Oxygen transport membranes: dense ceramic membranes for power plant applications
Title of book Advance membrane science and technology for sustainable energy and environmental applications
Place of Publication Cambridge , United Kingdom
Publisher Woodhead Publishing
Publication Year 2011
Sub-type Chapter in textbook
Series Woodhead Publishing in Energy
ISBN 9781845699697
1845699696
9780857093790
0857093797
Editor Angelo Basile
Suzana Pereira Nunes
Volume number 25
Chapter number 9
Start page 255
End page 294
Total pages 35
Total chapters 24
Language eng
Abstract/Summary This chapter addresses the latest developments in ceramic materials for use in oxygen transport membranes. Oxygen production is a multibillion dollar business with applications in clean energy, petrochemicals and metallurgical processes. The chapter describes the transport mechanisms involved and possible integration of these membranes in oxyfuel coal combustion and coal gasification. The chapter finishes with a discussion of the most appropriate membrane geometries and considerations for the development of membrane modules for industrial applications.
Q-Index Code BX
Q-Index Status Provisional Code
Institutional Status UQ

Document type: Book Chapter
Collections: School of Chemical Engineering Publications
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Citation counts: TR Web of Science Citation Count  Cited 3 times in Thomson Reuters Web of Science Article | Citations
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Created: Tue, 18 Oct 2011, 20:24:34 EST by Mr Simon Smart on behalf of School of Chemical Engineering