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Chrome Poisoning of Non-Manganiferous Cathode Materials for Solid Oxide Fuel Cells (SOFCs)

机译:用于固体氧化物燃料电池(SOFC)的非锰铁阴极材料的铬毒剂

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This work is focused on the degradation effect of chrome poisoning on LSCF cathodes for high temperature SOFCs aimed at an increase of the cell durability. Therefore the electrochemical performance of single cells is investigated at open cell voltage (OCV) and polarizations of 0.5, 0.75 and 1 A*cm~(-2) as well as at temperatures of 900 and 700°C in presence/absence of a chrome source. To identify the cathode related processes of the impedance spectra without anode contributions, symmetrical half cells were tested as well. It is observed that in presence of a chrome source the ohmic as well as the polarization resistances increase. At a temperature of 900°C and a humidity of 3.5%, the polarization resistance shows a stronger increase at current densities above 0.75 A*cm~(-2) whereas the polarization resistance remains linear. Furthermore, measurements at 700°C confirmed that also the operation temperature serves as a factor for accelerated chrome related cell degradation.
机译:这项工作侧重于铬中毒在LSCF阴极上的降解效应,用于高温SOFC的旨在增加细胞耐久性。因此,在开放电池电压(OCV)下,在开放电池电压(OCV)和0.5,0.75和1a * cm〜(-2)的偏振中进行电化学性能,以及在铬存在/不存在的情况下在900和700℃的温度下来源。为了识别没有阳极贡献的阻抗光谱的阴极相关过程,也测试了对称的半细胞。观察到,在铬源存在下,欧姆以及偏振电阻增加。在900℃和湿度为3.5%的温度下,偏振电阻显示在0.75A * cm〜(-2)以上的电流密度的较强增加,而偏振电阻保持线性。此外,700℃的测量确认,操作温度也用作加速铬相关细胞劣化的因素。

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