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Proton conductive oxide

Figure 22. Partially self-regulated methane reforming in an SOFC operating with a proton conducting oxidic electrolyte as suggested by Coors163 (see text) top) the overall cell reaction and bottom) the back diffusion step.164 Reprinted from K.D. Kreuer, Arum. Rev. Mater. Res., 33 (2003) 333-359. Copyright 2003 with permission from Annual Reviews. Figure 22. Partially self-regulated methane reforming in an SOFC operating with a proton conducting oxidic electrolyte as suggested by Coors163 (see text) top) the overall cell reaction and bottom) the back diffusion step.164 Reprinted from K.D. Kreuer, Arum. Rev. Mater. Res., 33 (2003) 333-359. Copyright 2003 with permission from Annual Reviews.
Keywords Compact fuel cell Proton conductive oxide Radiation induced conductivity Radiation enhanced diffusion... [Pg.133]

Iwahara, H., High temperature proton conducting oxides and their applications to solid electrolyte fuel cells and steam electrolyzer for hydrogen production. Solid State Ionics, 28/30, 573, 1988. [Pg.79]

Synthesize cerate and zirconate proton-conducting oxides from the component oxides. [Pg.156]

Synthesized SrCeo 95Ybo,o503-x nd SrZrg 9Y0 1O3.X proton-conducting oxides. [Pg.156]

Confirmed the orthorhombic crystal structure of the proton-conducting oxides using X-ray diffraction. The lattice parameters of the proton-conducting oxides were also measured. [Pg.156]

In investigations of proton conducting and mixed proton conducting oxides, one is usually interested in finding the concentration of protons and their role in the defect structure. Absolute measures of the proton content can be determined with a number of methods, most commonly and simply by thermogravimetry (TG). Various procedures are in use ... [Pg.26]

Acceptor-doped SrCe03 is, without doubt, the mixed electron-proton conducting oxide system most studied, both with respect to actual measurements of... [Pg.37]

Okada S, Mineshige A, Kikuchi T, Kobune M, Yazawa T (2007) Cermet-type hydrogen separation membrane obtained from fine particles of high temperature proton-conductive oxide and palladium. Thin Solid Films 515 7342-7346... [Pg.52]

The high temperature proton conducting oxides described here are perovskites based on SrCe03 or BaCeO in which some trivalent cations... [Pg.122]

In this experiment, undoped SrCeOj released little water vapour, but Yb-doped proton conducting oxides evolved a substantial amount of water vapour on raising the temperature. The 5% Yb-doped oxide released a larger amount of water vapour than the 3% doped specimen. This indicates that the higher the vacancy concentration produced by Yb-doping, the higher the proton concentration in the oxides. [Pg.131]

Sensors based on protonically conducting oxides 7.4.1. Hydrogen sensors... [Pg.176]

Many perovskite-type (ABO3) oxides show high proton conductivity in a reducing atmosphere. The most common proton-conducting oxide is BaCeOs, which has been doped with various oxides, including those of samarium (Ranran et al, 2006), neodymium (Schober, 2003 Kobayashi et al, 2005 Gorbova et al, 2006 Su et al, 2006) and ytterbium (Taherparvar et al,... [Pg.579]

Other proton-conducting oxides for potential use in SOFCs include BaScosZrosOs, (La,Pr)o.9Bai iGaOj 95 and Ndo.9BanGa03 95 (Kendrick et al, 2005). [Pg.580]

Tao S W and Irvine ITS (2006), A stable, easily sintered proton-conducting oxide electrolyte for moderate-temperature fuel cells and electrolyzers , Adv Mater, 18,1581-1584. [Pg.602]

In proton-conducting oxides, the increase of oxygen partial pressure when using high partial pressure of water will decrease the proton conductivity of the electrolyte according to the following equation ... [Pg.554]

At the moment, highly Y-doped BaZr03 seems to be the only proton-conducting oxide, which meets the essential requirements for SOFC electrolyte materials. Surprisingly, the development of this material required very little compromising, which can be understood from the above considerations. [Pg.89]

Yamaguchi, S, Yamamoto, S, Tsuchiya, B., Nagata, S, ShiShido, T. Construction of fuel reformer using proton conducting oxides electrolyte and hydrogen-permeable metal membrane cathode. J. Power Sources 2005 145 712-715. [Pg.362]

Kreuer KD (2003) Proton-conducting oxides. Annu Rev Mater Res 33 333-359... [Pg.439]

Fabbri E, Pergolesi D, Traversa E (2010) Materials challenges toward proton-conducting oxide fuel cells a critical review. Chem Soc Rev 39 4366-4369... [Pg.1520]


See other pages where Proton conductive oxide is mentioned: [Pg.434]    [Pg.435]    [Pg.57]    [Pg.247]    [Pg.55]    [Pg.58]    [Pg.58]    [Pg.465]    [Pg.709]    [Pg.1811]    [Pg.8]    [Pg.31]    [Pg.42]    [Pg.57]    [Pg.57]    [Pg.553]    [Pg.556]    [Pg.557]    [Pg.558]    [Pg.85]    [Pg.92]    [Pg.1459]   
See also in sourсe #XX -- [ Pg.129 ]

See also in sourсe #XX -- [ Pg.129 ]




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Conductivity oxides

Conductivity protonic

Defect Structures of Proton-conducting Oxides

Electrical conductivity proton-conducting oxides

Manganese oxide, proton conduction

Mechanisms of Proton Conduction in Perovskite-Type Oxides

Mixed proton—electron conducting oxide

PROTON CONDUCTING

Perovskite oxides proton conductivity

Proton Conduction in Cerium- and Zirconium-Based Perovskite Oxides

Proton Conductivity in Perovskite Oxides

Proton conductance

Proton conducting solid oxide fuel cells

Proton conduction

Proton conductivity in oxides

Proton conductivity protons

Proton-Electron Conducting Oxides

Proton-conducting oxides

Proton-conducting oxides

Protonic conducting

Protonic conduction

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