中文
Announcement
More
Progress in Chemistry 1997, Vol. 9 Issue (04): 385- Previous Articles   Next Articles

• Review •

The Progress in Solid Oxide Fuel Cells

Jiang Yi;LiWenzhao;Wang Shizhong   

  1. (Dalian Institute of Chemical Physics, Chinese Academy of Sciences,Dalian 116023, China)
  • Received: Revised: Online: Published:
PDF ( 7816 ) Cited
Export

EndNote

Ris

BibTeX

Solid oxide fuel cells (SOFC) , fabricated on entire solid state structu re,possess several advantages over other types of fuel cells. The use of solid electrolyte eliminates corrosion and liquid electrolyte handle problem , and the high operating temperature makes fuel flexible. The rapid development of SOFC in recent years has demonstrated the great possibility for SOFC as a new technique both for centralized and decentralized power generation. The present review gives an introduction to the characteristics, working principal, cell structures and key materials related to solid oxide fuel cells. The status and trend of R&D in the field of SOFC both abroad and at home have been reviewed in details.

CLC Number: 

[1 ] Bockris J O ’M , Reddy A K N , Modern Electrochemistry , Plenum Press, New York, 1970, 1530~1400.
[2 ] Grove W R, Phil. Mag. , 1939, 14, 127~ 130.
[3 ] Subbarao E C, Solid Electrolytes and Their Applications, Plenum Press, New York, 1980, 1~ 80.
[4 ] Minh N Q , J. Am. Ceramics Soc. , 1993, 76 (3) , 563~ 588.
[5 ] Hirschenhofer J H, Stauffer D B, Engleman R R, Fuel Cells, A Hand Book , Dept.of Energy, West Virginia, 1995, (5) , 1~ 26.
[6 ] Brown J T , Energy , 1994, 19, 209~ 228.
[7 ] Itoh H, Mori M , Mori N , Abe T , J. Power Sources, 1994, 49, 315~ 332.
[8 ] Badwal S P S , Forger K,in Proc.of 2nd Internal. Fuel Cell Conference, Kobe, Japan, 1996, 221~224.
[9 ] Drenckhahn W , Greiner H, Ivers-Tiffee E, Power J. , 1994, 4, 36~ 38.
[10 ] Tedmon C S , Spacil H S Jr , Mittoff S P , J. Electrochem. Soc. , 1969, 116, 1170~ 1176.
[11 ] Ohno Y, Nagata S, Sato H, Solid State Ionics, 1981, 3?4, 439~ 450.
[12 ] Takeda Y, Kanno R, Noda M , Tumida Y, Yamamoto O , J. Electrochem. Soc. , 1987, 134, 2656~2661.
[13 ] Ishihara T , Kudo T , Matsuda H, Takita Y, J. Electrochem. Soc. , 1995, 142, 1519~ 1524.
[14 ] Hammouche A , Siebert E, Hammou A , Mat. Res. B ull. , 1989, 24, 367~ 380.
[15 ] Dees D W , Claar T D, Easler T E, Fee D C, Mrazek F C, J. Electrochem. Soc. , 1987, 134, 2141~2146.
[16 ] Ivers-Tiffee E, Wersing W , Scheiebl M , Greiner H, Ber. Bunsenges. Phys. Chem. , 1990, 94, 978~ 981.
[17 ] Markin T L , Bones R J , Dell R M ,in Conferenceon Superionic Conductors (ed. Mahan G D ) ,Plenum Press, New York, 1976, 15~ 35.
[18 ] Thampi K R, McEvoy A G, Van Herle I, J. Electrochem. Soc. , 1995, 142, 2506~ 2512.
[19 ] Isenberg A O , Solid State Ionics, 1981, 3?4 , 431~ 437.
[20 ] Krist K, Wright J D, Romero C,in Proc.ofthe 4th Internal. Symp.on SOFC (ed. Dokiya M ) ,Electrochemical Soc. Inc. , New Jersey, 1995, 24~ 29.
[21 ] Greiner H, Thomas Grogler, Kock W , Singer R F,in Proc.of the 4th Internal. Symp.on SOFC(ed. Dokiya M ) , Electrochemical Soc. Inc. , New Jersey, 1995, 879~ 888.
[22 ] Baur E , Preis H, Z. Elektrochem. , 1937, 43, 727~ 732.
[23 ] Hashimoto N , J. Power Sources, 1994, 49, 103~ 114.
[24 ] Bessette N F, George R A ,in Proc.of 2nd Internal. Fuel Cell Conference, Kobe, Japan, 1996, 267~ 270.
[25 ] Stephen E V ,in Proc.of 2nd Internal. Fuel Cell Conference, Kobe, Japan, 1996, 271~ 274.
[26 ] Knudsen P, Bagger C , Mogensen M , J. Power Sources, 1994, 49, 291~ 298.
[27 ] Badwal S P S , Forger K,in Proc.of the 4th Internal. Symp.on SOFC (ed. Dokiya M ) , Electrochemical Soc. Inc. , New Jersey, 1995, 20~ 23.
[28 ] 江义, 孙新德, 李文钊, 第六届全国催化会议论文集, 上海, 1992,p. 138.
[29 ] 江义, 李文钊, 闫景旺, 王世忠, 电化学, 1996, 2 (2) , 156~ 163.
[30 ] 江义, 李文钊, 曹立新, 闫景旺, 电化学, 1996, 2 (1) , 32~ 39.
[31 ] 江义, 闫景旺, 王世忠, 李文钊, 电化学, 1997, 3 (4) , 121~ 126.
[32 ] Steele B C H, J. Power Sources, 1994, 49, 1~ 14.
[33 ] Mizutani Y, KawaiM , Nomura K, Nakamura Y,in Proc.of 2nd Internal. Fuel Cell Conference,Kobe, Japan, 1996, 457~ 460.
[34 ] Rim H R, Jeung S K, Lee H K, Lee J S,in Proc.of 2nd Internal. Fuel Cell Conference, Kobe,Japan, 1996, 469~ 472.
[35 ] Hu H G, Liu M L , J. Electrochem. Soc. , 1996, 143 (3) , 859~ 864.
[36 ] Bloom I, Krumpelt M ,in Proc.ofthe 4th Annual Fuel Cells Contractors Review Meeting , U. S.DO E/M ETC, July, 1992.
[37 ] Williams M ,in Proc.of the 4th Internal. Symp.on SOFC (ed. Dokiya M ) , Electrochemical Soc.Inc. , New Jersey, 1995, 10~ 19.

[1] Yang Zhang, Min Zhang, Hailei Zhao. Double Perovskite Material as Anode for Solid Oxide Fuel Cells [J]. Progress in Chemistry, 2022, 34(2): 272-284.
[2] Zhang Wenrui, Zhang Zhihui, Gao Liguo, Ma Tingli. Double Perovskite Material as An Electrode for Intermediate-Temperature Solid Oxide Fuel Cells Application [J]. Progress in Chemistry, 2016, 28(6): 961-974.
[3] Liu Zhangbo, Liu Beibei, Xia Changrong. Nano-Structured Anodes of Solid Oxide Fuel Cells [J]. Progress in Chemistry, 2013, 25(11): 1821-1829.
[4] Shao Zongping. Cathode Materials for Solid Oxide Fuel Cells Towards Operating at Intermediate-to-Low Temperature Range [J]. Progress in Chemistry, 2011, 23(0203): 418-429.
[5] Zhang Lei, Xia Changrong. Low Temperature Solid Oxide Fuel Cells [J]. Progress in Chemistry, 2011, 23(0203): 430-440.
[6] Lü Zhe, Wei Bo, Tian Yanting, Wang Zhihong, Su Wenhui. Key Materials and Micro-Stack Systems of Single Chamber Solid Oxide Fuel Cells [J]. Progress in Chemistry, 2011, 23(0203): 449-462.
[7] Huang Yucheng Li Zhe Kang Guojun Chen Zhaoxu. Theoretical Chemistry and New Energy Sources [J]. Progress in Chemistry, 2009, 21(11): 2271-2284.
[8] Xin Xianshuang|Zhu Qingshan**. Analyses of Solid Oxide Fuel Cells ( SOFCs) Stability [J]. Progress in Chemistry, 2009, 21(01): 227-234.
[9] Liang Mingde1,2 Yu Bo2** Wen Mingfen2 Chen Jing2 Xu Jingming2 Zhai Yuchun1. The Fabrication Technique of YSZ Electrolyte Film [J]. Progress in Chemistry, 2008, 20(0708): 1222-1232.
[10] Ge Lei|Ran Ran|Cai Rui|Shao Zongping**. Solid-Acid Fuel Cells [J]. Progress in Chemistry, 2008, 20(0203): 405-412.
[11] Wang Kang|Shao Zongping**. The Single Chamber Solid Oxide Fuel Cell [J]. Progress in Chemistry, 2007, 19(0203): 267-275.
[12] Jiang Liu. Direct-hydrocarbon Solid Oxide Fuel Cell [J]. Progress in Chemistry, 2006, 18(0708): 1026-1033.
[13] Wenqiang Zhang,Bo Yu*,Ping Zhang,Jing Chen,Jingming Xu. Progress on the Anode Materials for Solid Oxide Fuel Cells (SOFC) and Its Application for Hydrogen Production through High Temperature Steam Electrolysis [J]. Progress in Chemistry, 2006, 18(06): 832-840.
[14] Yao Yucheng,Yin Fushan. Progress in Study of Natura l Gas Hydrates [J]. Progress in Chemistry, 1997, 9(03): 319-.
Viewed
Full text


Abstract

The Progress in Solid Oxide Fuel Cells