Reversible Solid Oxide Fuel Cell Technology for Green Fuel and Power Production

被引:60
|
作者
Minh, Nguyen Q. [1 ]
Mogensen, Mogens B. [2 ]
机构
[1] Univ Calif San Diego, Ctr Energy Res, La Jolla, CA 92093 USA
[2] Risoe Natl Lab, Roskilde, Denmark
来源
ELECTROCHEMICAL SOCIETY INTERFACE | 2013年 / 22卷 / 04期
关键词
Solid electrolytes;
D O I
10.1149/2.F05134if
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
A reversible solid oxide fuel cell (RSOFC) is a device that can operate efficiently in both fuel cell and electrolysis operating modes. SOFC cells can be configured to be self supporting or external supporting. A wide range of fabrication processes have been investigated for making SOFC cells. Fabrication processes developed for the SOFC include conventional ceramic processing methods. One of the key attributes of the SOFC is its multi-fuel capability. For fuels other than pure hydrogen, the SOFC can operate on reformates or on hydrocarbons and other fuels. The operating temperature of the SOFC can be varied by modifying electrolyte material and/or electrolyte thickness. The SOFC has been considered for a broad spectrum of power generation applications and markets. SOFC stacks have demonstrated electrochemical performance under operating conditions appropriate for practical uses. In addition to fabrication scale-up for large power systems, the SOFC has also been scaled down for certain applications such as consumer electronics devices and compact portable powers.
引用
下载
收藏
页码:55 / 62
页数:8
相关论文
共 50 条
  • [1] Development of Reversible Solid Oxide Fuel Cell for Power Generation and Hydrogen Production
    Jung, G. B.
    Chen, J. Y.
    Lin, C. Y.
    Chan, S. H.
    ENERGY HARVESTING AND STORAGE: MATERIALS, DEVICES, AND APPLICATIONS II, 2011, 8035
  • [2] Reversible Solid Oxide Fuel Cell for Power Accumulation and Generation
    Osinkin, D. A.
    Bogdanovich, N. M.
    Beresnev, S. M.
    Pikalova, E. Yu.
    Bronin, D. I.
    Zaikov, Yu. P.
    RUSSIAN JOURNAL OF ELECTROCHEMISTRY, 2018, 54 (08) : 644 - 649
  • [3] Reversible Solid Oxide Fuel Cell for Power Accumulation and Generation
    D. A. Osinkin
    N. M. Bogdanovich
    S. M. Beresnev
    E. Yu. Pikalova
    D. I. Bronin
    Yu. P. Zaikov
    Russian Journal of Electrochemistry, 2018, 54 : 644 - 649
  • [4] The Institute of Power Engineering Activity in the Solid Oxide Fuel Cell Technology
    Golec, Tomasz
    Antunes, Rui
    Jewulski, Janusz
    Miller, Miroslaw
    Kluczowski, Ryszard
    Krauz, Mariusz
    Krzastek, Kazimierz
    Blesznowski, Marcin
    JOURNAL OF FUEL CELL SCIENCE AND TECHNOLOGY, 2010, 7 (01): : 0110031 - 0110035
  • [5] A novel integration of a green power-to-ammonia to power system: Reversible solid oxide fuel cell for hydrogen and power production coupled with an ammonia synthesis unit
    Mukelabai, Mulako Dean
    Gillard, Jonathon M.
    Patchigolla, Kumar
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2021, 46 (35) : 18546 - 18556
  • [6] SOLID OXIDE FUEL-CELL TECHNOLOGY
    BROWN, JT
    IEEE TRANSACTIONS ON ENERGY CONVERSION, 1988, 3 (02) : 193 - 198
  • [7] Electroceramics in solid oxide fuel cell technology
    McEvoy, AF
    OXIDE-BASED SYSTEMS AT THE CROSSROADS OF CHEMISTRY, 2001, 140 : 341 - 351
  • [8] Solid oxide fuel cell technology for the future
    Minh, Nguyen Q.
    Lee, Yoon Ho
    AMERICAN CERAMIC SOCIETY BULLETIN, 2022, 101 (01): : 28 - 33
  • [9] REVIEWS ON SOLID OXIDE FUEL CELL TECHNOLOGY
    Laosiripojana, Navadol
    Wiyaratn, Wisitsree
    Kiatkittipong, Worapon
    Arpornwichanop, Arnornchai
    Soottitantawat, Apinan
    Assabumrungrat, Suttichai
    ENGINEERING JOURNAL-THAILAND, 2009, 13 (01): : 65 - 83
  • [10] Status of solid oxide fuel cell technology
    Singhal, SC
    HIGH TEMPERATURE ELECTROCHEMISTRY: CERAMICS AND METALS, 1996, : 123 - 138