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Composite Cathode Based on Redox-Reversible Nb2TiO7 for Direct High-Temperature Steam Electrolysis
被引:2
|作者:
Li, Shi-song
[1
]
Cheng, Ji-gui
[1
]
Zhang, Xu-cheng
[1
]
Wang, Yu
[1
]
Xie, Kui
[1
]
机构:
[1] Hefei Univ Technol, Sch Mat Sci & Engn, Dept Energy Mat, Hefei 230009, Peoples R China
关键词:
Redox-reversible;
Alternative fuel electrode;
Solid oxide electrolyzer;
Steam electrolysis;
SOLID OXIDE ELECTROLYZER;
HYDROGEN-PRODUCTION;
WATER ELECTROLYSIS;
TECHNOLOGY;
CELLS;
ANODE;
ESCA;
XPS;
CO2;
D O I:
10.1063/1674-0068/28/cjcp1412210
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
O56 [分子物理学、原子物理学];
学科分类号:
070203 ;
070304 ;
081704 ;
1406 ;
摘要:
Ni/YSZ fuel electrodes can only operate under strongly reducing conditions for steam electrolysis in an oxide-ion-conducting solid oxide electrolyzer (SOE). In atmosphere with a low content of H-2 or without H-2, cathodes based on redox-reversible Nb2TiO7 provide a promising alternative. The reversible changes between oxidized Nb2TiO7 and reduced Nb1.33Ti0.67O4 samples are systematically investigated after redox-cycling tests. The conductivities of Nb2TiO7 and reduced Nb1.33Ti0.67O4 are studied as a function of temperature and oxygen partial pressure and correlated with the electrochemical properties of the composite electrodes in a symmetric cell and SOE at 830 degrees C. Steam electrolysis is then performed using an oxide-ion-conducting SOE based on a Nb1.33Ti0.67O4 composite fuel electrode at 830 degrees C. The current-voltage and impedance spectroscopy tests demonstrate that the reduction and activation of the fuel electrode is the main process at low voltage; however, the steam electrolysis dominates the entire process at high voltages. The Faradic efficiencies of steam electrolysis reach 98.9% when 3%H2O/Ar/4%H-2 is introduced to the fuel electrode and 89% for that with introduction of 3%H2O/Ar.
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页码:323 / 330
页数:8
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