Design of medium–temperature solid oxide fuel cells on porous supports of deformation strengthened Ni–Al alloy

被引:0
|
作者
V. A. Sadykov
V. V. Usoltsev
Yu. E. Fedorova
V. A. Sobyanin
P. V. Kalinin
A. V. Arzhannikov
A. Yu. Vlasov
M. V. Korobeinikov
A. A. Bryazgin
A. N. Salanov
M. R. Predtechenskii
O. F. Bobrenok
A. S. Ulikhin
N. F. Uvarov
O. L. Smorygo
A. F. Il’yushchenko
V. Yu. Ul’yanitskii
S. B. Zlobin
机构
[1] Russian Academy of Sciences,Boreskov Institute of Catalysis, Siberian Branch
[2] Novosibirsk State University,Budker Institute of Nuclear Physics, Siberian Branch
[3] Russian Academy of Sciences,Institute of Thermal Physics, Siberian Branch
[4] Russian Academy of Sciences,Institute of Solid State Chemistry and Mechanochemistry, Siberian Branch
[5] Russian Academy of Sciences,Institute of Powder Metallurgy
[6] National Academy of Sciences,Lavrent’ev Institute of Hydrodynamics, Siberian Branch
[7] Belarus,undefined
[8] Russian Academy of Sciences,undefined
来源
关键词
solid-oxide medium-temperature fuel cells; supports of a nickel-aluminum alloy; design; nanocomposite cathodic materials; sintering; electron beams and microwave radiation; voltammetric characteristics;
D O I
暂无
中图分类号
学科分类号
摘要
An approach was developed towards design of medium-temperature solid-oxide fuel cells based on a deformation strengthened Ni-Al alloy. Methods of sintering were described that allowed obtaining layers of complex oxides with ionic and mixed conductivity and with regulated porosity in the range of 40–1%. Power density of a fuel cell on a metallic support reaches 500 mW/cm2 already at 700°C when humid H2 was used as fuel and air was used as an oxidant. Analysis of fuel cell cross-section after tests showed absence of fractures, flaking, and new phases with low conductivity, which proves good compatibility of all materials used in fuel cell design.
引用
收藏
页码:488 / 493
页数:5
相关论文
共 50 条
  • [1] Design of Medium-Temperature Solid Oxide Fuel Cells on Porous Supports of Deformation Strengthened Ni-Al Alloy
    Sadykov, V. A.
    Usoltsev, V. V.
    Fedorova, Yu. E.
    Sobyanin, V. A.
    Kalinin, P. V.
    Arzhannikov, A. V.
    Vlasov, A. Yu.
    Korobeinikov, M. V.
    Bryazgin, A. A.
    Salanov, A. N.
    Predtechenskii, M. R.
    Bobrenok, O. F.
    Ulikhin, A. S.
    Uvarov, N. F.
    Smorygo, O. L.
    Il'yushchenko, A. F.
    Ul'yanitskii, V. Yu.
    Zlobin, S. B.
    RUSSIAN JOURNAL OF ELECTROCHEMISTRY, 2011, 47 (04) : 488 - 493
  • [2] Improvement of corrosion properties of porous alloy supports for solid oxide fuel cells
    Stange, M.
    Denonville, C.
    Larring, Y.
    Brevet, A.
    Montani, A.
    Sicardy, O.
    Mougin, J.
    Larsson, P. O.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2017, 42 (17) : 12485 - 12495
  • [3] Synthesis of porous NiAl-Ni3Al alloys for metal supports of solid oxide fuel cells
    Maznoy, A. S.
    Kirdyashkin, A. I.
    Kitler, V. D.
    Guschin, A. N.
    Solovyev, A. A.
    Ionov, I. V.
    LETTERS ON MATERIALS-PIS MA O MATERIALAKH, 2015, 5 (04): : 491 - 496
  • [4] Porous Ni–Al–CGO Cermet for Use in Solid Oxide Fuel Cells
    A. A. Solovyev
    A. S. Maznoy
    K. A. Kuterbekov
    S. A. Nurkenov
    S. Opakhai
    A. I. Kirdyashkin
    V. D. Kitler
    N. S. Pichugin
    S. V. Rabotkin
    I. V. Ionov
    International Journal of Self-Propagating High-Temperature Synthesis, 2019, 28 : 256 - 261
  • [5] Porous Ni-Al-CGO Cermet for Use in Solid Oxide Fuel Cells
    Solovyev, A. A.
    Maznoy, A. S.
    Kuterbekov, K. A.
    Nurkenov, S. A.
    Opakhai, S.
    Kirdyashkin, A., I
    Kitler, V. D.
    Pichugin, N. S.
    Rabotkin, S., V
    Ionov, I., V
    INTERNATIONAL JOURNAL OF SELF-PROPAGATING HIGH-TEMPERATURE SYNTHESIS, 2019, 28 (04) : 256 - 261
  • [6] Creep behaviour of porous metal supports for solid oxide fuel cells
    Boccaccini, D. N.
    Frandsen, H. L.
    Sudireddy, B. R.
    Blennow, P.
    Persson, A. H.
    Kwok, K.
    Hendriksen, P. Vang
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2014, 39 (36) : 21569 - 21580
  • [7] Medium-temperature solid oxide fuel cells
    Maffei, N
    Kuriakose, AK
    ENVIRONMENT CONSCIOUS MATERIALS - ECOMATERIALS, 2000, : 459 - 470
  • [8] Synthesis and investigation of porous Ni-Al substrates for solid-oxide fuel cells
    Solov'Ev A.A.
    Sochugov N.S.
    Ionov I.V.
    Kirdyashkin A.I.
    Kitler V.D.
    Maznoi A.S.
    Maksimov Y.M.
    Sigfusson T.I.
    Inorganic Materials: Applied Research, 2013, 4 (5) : 431 - 437
  • [9] Medium Temperature Solid Oxide Fuel Cells Based on Supporting Porous Anode and Bilayered Electrolyte
    Lust, E.
    Kivi, I.
    Tamm, K.
    Moeller, P.
    Anderson, E.
    Kurig, H.
    Vestli, M.
    Nurk, G.
    SOLID OXIDE FUEL CELLS 12 (SOFC XII), 2011, 35 (01): : 333 - 342
  • [10] Foaming of filled polyurethanes for fabrication of porous anode supports for intermediate temperature-solid oxide fuel cells
    Rainer, Alberto
    Basoli, Francesco
    Licoccia, Silvia
    Traversa, Enrico
    JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2006, 89 (06) : 1795 - 1800