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Optimization of Sm0.5Sr0.5CoO3-delta-infiltrated YSZ electrodes for solid oxide fuel cell/electrolysis cell

机译:固态氧化物燃料电池/电解池Sm0.5Sr0.5CoO3-δ渗透YSZ电极的优化

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摘要

The Sm0.5Sr0.5CoO3-delta (SSC) oxygen electrode has attracted much interest due to its high electrical conductivity and electrochemical activity. In this work, a SSC-YSZ (yttria stabilized zirconia) composite electrode was prepared by an infiltration process. First, cells with different SSC contents in the oxygen electrode and different sintering temperatures were prepared and tested in solid oxide fuel cell (SOFC) mode. An optimal cell with an SSC content of 45 wt% and sintering temperature of 850 degrees C shows favorable microstructure and relatively lower polarization resistance. The peak power densities of 0.96 W cm(-2) and polarization resistances as low as 0.39 Omega cm(-2) were obtained at 750 degrees C. Then, in solid oxide electrolysis cell (SOEC) mode, the effects of CO2/H2O ratio were investigated. Results indicated that the CO2/H2O ratio has little influence on the electrolysis performance in the range of 1 : 2-2 : 1. Finally, the electrochemical stability of the cell in both modes was tested at 750 degrees C for about 100 h. After a slight degradation in the initial 25 h, the cell showed good stability in SOFC mode, and no visible degradation was detected in SOEC mode in 100 h operation.
机译:Sm0.5Sr0.5CoO3-delta(SSC)氧电极因其高电导率和电化学活性而备受关注。在这项工作中,通过渗透工艺制备了SSC-YSZ(氧化钇稳定的氧化锆)复合电极。首先,制备并在固态氧化物燃料电池(SOFC)模式下测试氧电极中SSC含量不同,烧结温度不同的电池。 SSC含量为45 wt%且烧结温度为850℃的最佳电池显示出良好的微观结构和相对较低的极化电阻。在750摄氏度下获得0.96 W cm(-2)的峰值功率密度和低至0.39 Omega cm(-2)的极化电阻。然后,在固体氧化物电解池(SOEC)模式下,CO2 / H2O的影响比率进行了调查。结果表明,CO 2 / H 2 O比在1∶2-2∶1的范围内对电解性能几乎没有影响。最后,在750℃下测试两种模式下电池的电化学稳定性约100小时。在最初的25小时内发生轻微降解后,该电池在SOFC模式下显示出良好的稳定性,并且在100小时运行的SOEC模式下未检测到可见的降解。

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