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Volumn , Issue , 2009, Pages 255-271

Model-based design of energy efficient palladium membrane water gas shift fuel processors for PEM fuel cell power plants

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EID: 77955916310     PISSN: None     EISSN: None     Source Type: Book    
DOI: 10.1007/978-0-387-34526-0_14     Document Type: Chapter
Times cited : (1)

References (29)
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    • Ma, Y.H.1    Engwall, E.E.2    Mardilovich, I.P.3
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    • Transport resistance for oxide diffusion barriers on porous metal supports used in composite Pd and Pd-alloy membranes
    • Engwall EE, Mardilovich IP, Ma YH. Transport resistance for oxide diffusion barriers on porous metal supports used in composite Pd and Pd-alloy membranes. Prepr Symp-Am Chem Soc Div Fuel Chem. 2003;48(1):390-1.
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    • Engwall, E.E.1    Mardilovich, I.P.2    Ma, Y.H.3
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    • Palladium/copper alloy composite membrane for high temperature hydrogen separation from coal derived gas streams
    • Way JD. Palladium/copper alloy composite membrane for high temperature hydrogen separation from coal derived gas streams. DOE report, 2002.
    • (2002) DOE Report
    • Way, J.D.1
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    • Völkl J, Alefeld G. Diffusion of hydrogen in metals. In: Alefeld G, Völkl J, editors. Hydrogen in metals. Vol. I. Berlin: Springer-Verlag; 1978. pp. 321-48 (vol. 28 of topics in Applied Physics).
    • (1978) Hydrogen in Metals , vol.1 , pp. 321-348
    • Völkl, J.1    Alefeld, G.2
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    • Thermodynamic modeling of the Cu-Pd-H system
    • Huang W, Opalka SM, Wang D, and Flanagan TB, "Thermodynamic Modeling of the Cu-Pd-H system", CALPHAD, 2007;31(3):315-29.
    • (2007) CALPHAD , vol.31 , Issue.3 , pp. 315-329
    • Huang, W.1    Opalka, S.M.2    Wang, D.3    Flanagan, T.B.A.4
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* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.