Metal-Supported Solid Oxide Electrolysis Cell with Significantly Enhanced Catalysis

被引:31
|
作者
Wang, Ruofan [1 ]
Dogdibegovic, Emir [1 ]
Lau, Grace Y. [1 ]
Tucker, Michael C. [1 ]
机构
[1] Lawrence Berkeley Natl Lab, Energy Storage & Distributed Resources Div, 1 Cyclotron Rd, Berkeley, CA 94720 USA
关键词
high-temperature steam electrolysis; hydrogen production; infiltration; solid oxide electrolyzer cells; solid oxide electrolysis; TEMPERATURE WATER ELECTROLYSIS; FUEL-CELLS; HYDROGEN-PRODUCTION; STEAM ELECTROLYSIS; POLARIZATION RESISTANCE; OXYGEN-ELECTRODE; HIGH-EFFICIENCY; PERFORMANCE; DEGRADATION; STABILITY;
D O I
10.1002/ente.201801154
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
High-temperature electrolysis (HTE) using solid oxide electrolysis cells (SOECs) is a promising hydrogen production technology and has attracted substantial research attention over the last decade. While most studies are conducted on hydrogen electrode-supported type cells, SOEC operation using metal-supported cells has received minimal attention. The development of metal-supported SOECs with performance similar to the best conventional SOECs is reported. These cells have stainless steel supports on both sides, 10Sc1CeSZ electrolyte and electrode backbones, and nano-structured catalysts infiltrated on both hydrogen and oxygen electrode sides. Samarium-doped ceria (SDC) mixed with Ni is infiltrated as a hydrogen electrode catalyst, and the effect of ceria:Ni ratio is studied. On the oxygen electrode side, catalysts including lanthanum strontium manganite (LSM), lanthanum strontium cobalt ferrite (LSCF), praseodymium oxide (Pr6O11), and their composite catalysts with SDC (i.e., LSM-SDC, LSCF-SDC, and Pr6O11-SDC) are compared. Using the materials with highest catalytic activity (Pr6O11-SDC and SDC40-Ni60) and optimizing the catalyst infiltration processes, excellent electrolysis performance of metal-supported cells is achieved. Current densities of -5.31, -4.09, -2.64, and -1.62Acm(-2) are achieved at 1.3V and 50vol% steam content at 800, 750, 700, and 650 degrees C, respectively.
引用
收藏
页数:13
相关论文
共 50 条
  • [31] Development of Metal-Supported Solid Oxide Fuel Cells
    Franco, Th.
    Haydn, M.
    Muecke, R.
    Weber, A.
    Ruettinger, M.
    Buechler, O.
    Uhlenbruck, S.
    Menzler, N. H.
    Venskutonis, A.
    Sigl, L. S.
    SOLID OXIDE FUEL CELLS 12 (SOFC XII), 2011, 35 (01): : 343 - 349
  • [32] Enhanced power density of metal-supported solid oxide fuel cell with a two-step firing process
    Cho, Hyoup Je
    Park, Young Min
    Choi, Gyeong Man
    SOLID STATE IONICS, 2011, 192 (01) : 519 - 522
  • [33] Metal-Supported Solid Oxide Fuel Cells with Impregnated Electrodes
    Zhou, Yucun
    Zhan, Zhongliang
    Wang, Shaorong
    SOLID OXIDE FUEL CELLS 13 (SOFC-XIII), 2013, 57 (01): : 877 - 883
  • [34] Nanostructure Electrodes for Metal-supported Solid Oxide Fuel Cells
    Zhan, Zhongliang
    Zhou, Yucun
    Wang, Shaorong
    Liu, Xuejiao
    Meng, Xie
    Wen, Tinglian
    SOLID OXIDE FUEL CELLS 13 (SOFC-XIII), 2013, 57 (01): : 925 - 931
  • [35] Metal-Supported Solid Oxide Fuel Cells with a Simple Structure
    Zhou, Yucun
    Ye, Xiaofeng
    Li, Junliang
    Zhan, Zhongliang
    Wang, Shaorong
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2014, 161 (03) : F332 - F336
  • [36] Metal-supported solid oxide fuel cell operated at 400-600°C
    Hui, Shiqiang
    Yang, Dongfang
    Wang, Zhenwei
    Yick, Sing
    Deces-Petit, Cyrille
    Qu, Wei
    Tuck, Adam
    Maric, Radenka
    Ghosh, Dave
    JOURNAL OF POWER SOURCES, 2007, 167 (02) : 336 - 339
  • [37] Coating developments for Metal-supported Solid Oxide Fuel Cells
    Stange, M.
    Denonville, C.
    Larring, Y.
    Haavik, C.
    Brevet, A.
    Montani, A.
    Sicardy, O.
    Mougin, J.
    Larsson, P. O.
    SOLID OXIDE FUEL CELLS 13 (SOFC-XIII), 2013, 57 (01): : 511 - 520
  • [38] Manufacturing and characterization of metal-supported solid oxide fuel cells
    Blennow, Peter
    Hjelm, Johan
    Klemenso, Trine
    Ramousse, Severine
    Kromp, Alexander
    Leonide, Andre
    Weber, Andre
    JOURNAL OF POWER SOURCES, 2011, 196 (17) : 7117 - 7125
  • [39] Spray pyrolysis deposition of electrolyte and anode for metal-supported solid oxide fuel cell
    Xie, Yongsong
    Neagu, Roberto
    Hsu, Ching-Shiung
    Zhang, Xinge
    Deces-Petit, Cyrille
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2008, 155 (04) : B407 - B410
  • [40] RECOVERABLE PERFORMANCE OF PLASMA-SPRAYED METAL-SUPPORTED SOLID OXIDE FUEL CELL
    Hwang, Chang-Sing
    Tsai, Chun-Huang
    Chang, Chun-Liang
    Chuang, Chih-Ming
    Yang, Sheng-Fu
    Cheng, Shih-Wei
    Shie, Zong-Yang Chuang
    Lee, Ruey-Yi
    ADVANCES IN SOLID OXIDE FUEL CELLS X, 2015, : 23 - 31