Accelerated Materials Design for Hydrogen Separation Membranes
Author:
Affiliation:
1. National Energy Technology Laboratory, 1450 Queen Ave. SW, Albany, OR 97321, U.S.A.
2. URS Corp., P.O. Box 1959, Albany, OR 97321, U.S.A.
Publisher
American Chemical Society
Link
https://pubs.acs.org/doi/pdf/10.1021/bk-2011-1078.ch003
Reference45 articles.
1. Office of Fossil Energy, N.Hydrogen from Coal Program, RD&D Plan, External Draft; U.S. Dept. of Energy, Editor. September2008.
2. Hydrogen from coal gasification: An economical pathway to a sustainable energy future
3. Hunter, J. B.Surface Area Hydrogen Permeation Cell; U.S. Patent, Editor.1960. p 062.
4. Diffusion of Hydrogen through Palladium Membranes
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1. Comparison of the corrosion of Cu50Pd50 and Cu50Pd44M6 (M=Y, Mg, or Al) hydrogen separation membrane alloys in simulated syngas containing H2S;Corrosion Science;2013-11
2. First principles screening of B2 stabilizers in CuPd-based hydrogen separation membranes: (1) Substitution for Pd;Journal of Alloys and Compounds;2013-10
3. Oxygen-induced Y surface segregation in a CuPdY ternary alloy;Surface Science;2013-02
4. Ordered bcc phases in a Cu–Pd–Mg hydrogen separation membrane alloy;Journal of Alloys and Compounds;2012-07
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