中文
Announcement
More
Progress in Chemistry 2007, Vol. 19 Issue (0203): 267-275 Previous Articles   Next Articles

• Review •

The Single Chamber Solid Oxide Fuel Cell

Wang Kang; Shao Zongping**   

  1. Key Laboratory of Materials-Oriented Chemical Engineering of Ministry of Education of China, College of Chemistry and Chemical Engineering, Nanjing University of Technology, Nanjing 210009, China
  • Received: Revised: Online: Published:
PDF ( 1659 ) Cited
Export

EndNote

Ris

BibTeX

Recently, there is an increasing interest on a novel type of fuel cell.,the single chamber fuel cell, which generates electricity through the reaction of fuel with oxygen within the same chamber. Such fuel cell has potential application in portable power supply because of its unique properties, such as sealant-free, simple cell/stack configuration, and good thermal/mechanical shock resistance. The present paper gives an thoroughly review in the recent progress on the single chamber solid oxide fuel cell. Main attentions are paid to its development background, characteristics, working principle, and various parameters that determinating its performance. The main block limits its future application and the possible solution are proposed.

CLC Number: 

[ 1 ] Ishiharal T , Sato K, Takita Y. J . Am. Ceram. Soc. , 1996 , 79 :913 —919
[ 2 ] Grove W R. Phil . Mag. , 1839 , 14 : 127 —130
[ 3 ] Mond L , Langer C. Proc. R. Soc. , 1889 , 46 : 296 —304
[ 4 ] Perry M L , Fuller T F. J . Electrochem. Soc. , 2002 , 149 : 59 —67
[ 5 ] Minh N Q. J . Am. Ceram. Soc. , 1993 , 76(3) : 563 —588
[ 6 ] Ishihara T , Sato K, Takita Y. J . Am. Ceram. Soc. , 1996 , 79 :913 —919
[ 7 ] Itoh H , Mori M, Mori N , Abe T. J . Power Sources , 1994 , 49 :315 —332
[ 8 ] Eyraud C , Lenoir J , Gery M. Compt . Rend. , 1961 , 252 :1599 —1603
[ 9 ] Gool W V. Philips Res. Reports , 1965 , 20 : 81 —93
[10] Louis G A , Lee J M. US 4 248 941 , 1981
[11] Dyer C K. Nature , 1990 , 343 : 547 —548
[12] Hibino T , Wang S. Electrochem. Solid2State Lett . , 1999 , 2(7) :317 —319
[13] Hibino T , Tsunekawa H. J . Electrochem. Soc. , 2000 , 147 (4) :1338 —1343
[14] Hibino T , Hashimoto A. J . Electrochem. Soc. , 2000 , 147 :2888 —2892
[15] Hibino T , Hashimoto A. Science , 2000 , 288 : 2031 —2036
[16] Hibino T , Hashimoto A , Inoue T , et al . J . Electrochem. Soc. ,2001 , 148 : 544 —549
[17] Hibino T , Hashimoto A , Yano M, et al . J . Electrochem. Soc. ,2002 , 149 : 133 —136
[18] Hibino T , Iwahara H. Chem. Lett . , 1993 , 7 : 1131 —1134
[19] Hibino T , Asano K, Iwahara H. Chem. Lett . , 1994 , 3 : 485 —488
[20] Hibino T , Ushiki K, Kuwahara Y. Solid State Ionics , 1996 , 91 :69 —74
[21] Hibino T , Kuwahara Y, Wang S. J . Electrochem. Soc. , 1999 ,146 : 2821 —2826
[22] Suzuki T , Jasinski P , Anderson H U , et al . J . Electrochem.Soc. , 2004 , 151 : 1678 —1682
[23] Suzuki T , Jasinski P , Anderson H U , et al . J . Electrochem.Soc. , 2004 , 7 : 391 —393
[24] Suzuki T , Jasinski P , Petrovsky V , et al . J . Electrochem. Soc. ,2004 , 151 (9) : 1473 —1476
[25] Suzuki T , Jasinski P , Petrovsky V , et al . J . Electrochem. Soc. ,2005 , 152 (3) : 527 —531
[26] Jasinski P , Suzuki T , Byars Z. Proc. 2Electrochem. Soc. , 2003 ,7 : 1101 —1108
[27] Asano K, Iwahara H. J . Electrochem. Soc. , 1997 , 144 : 3125 —3130
[28] Ishihara T , Yamada Y. Chem. Eng. Sci . , 1999 , 54 : 1535 —1540
[29] Cavala C A , Larsen G, Vayenas C G, et al . J . Phys. Chem. ,1993 , 97 : 6115 —6119
[30] Riess I , Vanderput P J , Schoonman J . Solid State Ionics , 1995 ,82 : 1 —4
[31] Lee A L , Zabransly R F , Huber W J . Ind. Eng. Chem. Res. ,1990 , 29 : 2821 —2826
[32] Achenbach E , Riensche E. J . Power Sources , 1994 , 54 : 283 —288
[33] Belyaev V D , Politova T I , Marina O A , et al . Appl . Catal . ,1995 , 133 : 47 —54
[34] Dicks A L. Appl . Catal . , 1996 , 61 : 47 —54
[35] Buergler B E , Siegrist M E , Gauckler L J . Solid State Ionics ,2005 , 176 : 1717 —1722
[36] Appleby A J . J . Power Sources , 1994 , 49 : 113 —124
[37] Asano K, Hibino T , Iwahara H. J . Electrochem. Soc. , 1995 ,142 : 3241 —3245
[38] Napporn T W, Jacques-Bedard X, Morin F , et al . J .Electrochem. Soc. , 2004 , 151 : 2088 —2094
[39] 衣宝廉(Yi B L) . 燃料电池—原理·技术·应用( Fuel Cell :Principle , Technology and Application) . 北京: 化学工业出版社(Beijing : Chemical Industry Press) , 2004. 468 —469
[40] Tomita A , Hirabayashi D , Hibino T , et al . Electrochem. Solid State Lett . , 2005 , 8 : 63 —65
[41] Murray E P , Tsai T , Barnett S A. Nature , 1999 , 400 : 649 —651
[42] Kim H , Lu C , Worrell W L , et al . J . Electrochem. Soc. , 2002 ,81 : 989 —996
[43] Tedmon C S , Spacil H SJr , Mittoff S P. J . Electrochem. Soc. ,1969 , 116 : 1170 —1175
[44] Ohno Y, Nagata S , Sato H. Solid State Ionics , 1981 , 4 : 439 —450
[45] Skinner S J . Int . J . Inorg. Mater. , 2001 , 3(2) : 113 —121
[46] Shao Z P , Kwak C , Haile S M. Solid State Ionics , 2004 , 175 :39 —46
[47] Shao Z P , Haile S M. Natrue , 2004 , 431 : 170 —173
[48] Yamaji K, Horita T , Ishikawa M, et al . Solid State Ionics , 1998 ,108 : 415 —421
[49] Huang P , Horky A , Petric A. J . Am. Ceram. Soc. , 1999 , 82 :2402 —2408
[50] Inaba H , Tagawa H. Solid State Ionics , 1996 , 83 : 1 —16
[51] Mogensen M, Sammes N M, Tompsett G A. Solid State Ionics ,2000 , 129 : 63 —94
[52] Gottesfeld S. Nature , 1990 , 345 : 673 —673
[53] Stefan I C , Jacobson C P , Visco S J , et al . Electrochem. Solid State Lett . , 2004 , 7(7) : 198 —200
[54] Wen T L , Nie H W, Wang S R. Proceedings International Hydrogen Energy Congress and Exhibition IHEC. Istanbul ,Turkey , 2005
[55] Shao Z P , Haile S M, Ahn J , et al . Nature , 2005 , 435 : 795 —798
[56] Horiuchi M, Suganuma S , Watanabe M. J . Electrochem. Soc. ,2004 , 151 : 1402 —1405
[57] Napporn T , Morin F , Meunier M. Electrochem. Solid2State Lett . , 2004 , 7(3) : 60 —70

[1] Zhang Xiaofei, Li Shenhao, Wang Zhen, Yan Jian, Liu Jiaqin, Wu Yucheng. Review on the First-Principles Calculation in Lithium-Sulfur Battery [J]. Progress in Chemistry, 2023, 35(3): 375-389.
[2] 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.
[3] Qi Huang, Zhenyu Xing. Advances in Lithium Selenium Batteries [J]. Progress in Chemistry, 2022, 34(11): 2517-2539.
[4] Xiaolin Liu, Xiya Yang, Hailong Wang, Kang Wang, Jianzhuang Jiang. Organic Compounds as Electrode Materials for Rechargeable Devices [J]. Progress in Chemistry, 2021, 33(5): 818-837.
[5] Yi Zhang, Meng Zhang, Yifan Tong, Haixia Cui, Pandeng Hu, Weiwei Huang. Application of Multi-Carbonyl Covalent Organic Frameworks in Secondary Batteries [J]. Progress in Chemistry, 2021, 33(11): 2024-2032.
[6] Shaoming Qiao, Naibao Huang, Zhengyuan Gao, Shixian Zhou, Yin Sun. Nickel-Manganese Binary Metal Oxide as Electrode Materials for Supercapacitors [J]. Progress in Chemistry, 2019, 31(8): 1177-1186.
[7] Yongming Zhu, Yunpeng Jiang, Huili Hu*. Preparation and Application of Nanometer NCS in Electrochemical Energy Conversion and Storage [J]. Progress in Chemistry, 2017, 29(11): 1422-1434.
[8] 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.
[9] Xia Wen, Li Zheng, Xu Yinli, Zhuang Xupin, Jia Shiru, Zhang Jianfei. Bacterial Cellulose Based Electrode Material for Supercapacitors [J]. Progress in Chemistry, 2016, 28(11): 1682-1688.
[10] Zhuang Shuxin, Lv Jianxian, Lu Mi, Liu Yimin, Chen Xiaobin. Preparation and Applications of Perovskite-Type Oxides as Electrode Materials for Solid Oxide Fuel Cell and Metal-Air Battery [J]. Progress in Chemistry, 2015, 27(4): 436-447.
[11] Jin Yi, Sun Xin, Yu Yan, Ding Chuxiong, Chen Chunhua, Guan Yibiao. Research Progress in Sodium-Ion Battery Materials for Energy Storage [J]. Progress in Chemistry, 2014, 26(04): 582-591.
[12] Liu Zhangbo, Liu Beibei, Xia Changrong. Nano-Structured Anodes of Solid Oxide Fuel Cells [J]. Progress in Chemistry, 2013, 25(11): 1821-1829.
[13] Chen Lixiang, Xiao Yong, Zhao Feng. Biocathodes in Microbial Fuel Cells [J]. Progress in Chemistry, 2012, 24(01): 157-162.
[14] Zhang Linchao, Chen Chunhua. Electrode Materials for Lithium Ion Battery [J]. Progress in Chemistry, 2011, 23(0203): 275-283.
[15] 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.
Viewed
Full text


Abstract

The Single Chamber Solid Oxide Fuel Cell