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Influence of Working Parameters and Degradation on Anode-Supported Cells studied by Electrochemical Impedance Spectroscopy

机译:工作参数和降解对电化学阻抗光谱研究研究的阳极支持细胞的影响

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Electrochemical Impedance Spectroscopy (EIS) is one of the most common techniques to characterize Solid Oxide Fuel Cells (SOFCs) during operation and to evaluate the influence on their performances of several working conditions and degradation effects. However, process overlapping in the frequency domain makes it difficult to clearly distinguish the contributions from each part of the cell to the impedance spectra. Therefore, a precise attribution of the electrodes losses and their evolution during the cell degradation becomes challenging. In this work a state of the art anode-supported cell [Ni/8YSZ-cermet anode, 8YSZ electrolyte with GDC interlayer, LSCF cathode] has been characterized by means of current-voltage curves and EIS under several working conditions. The impedance spectra have been analyzed calculating their distribution function of relaxation times (DRT) allowing to separate 4 different loss mechanisms occurring at the cell electrodes. The processes attribution has been carried out varying the feeding gases composition at Open Circuit Voltage (OCV) and under the electrical current load of 500mAcm-1. Such procedure allowed to identify the the anode as the most affected cell component to the degradation after 100 hours of aging test under polarization.
机译:电化学阻抗光谱(EIS)是在操作期间表征固体氧化物燃料电池(SOFC)的最常见技术之一,并评估对其几种工作条件的性能和降解效果的影响。然而,频域中的处理重叠使得难以清楚地区分小区的每个部分到阻抗谱的贡献。因此,电极损失的精确归因及其在细胞降解期间的进化变得具有挑战性。在这项工作中,通过电流 - 电压曲线和若干工作条件下的电流电压曲线和EIS表征了现有技术支持的细胞[Ni / 8YSZ-CERMET阳极,8YSZ电解质,LSCF阴极,LSCF阴极。已经分析了阻抗谱来计算它们的弛豫时间(DRT)的分布函数,允许在电池电极处分离出现的4种不同的丢失机制。该过程归因于在开路电压(OCV)下改变喂料气体组合物,并且在500macM-1的电流负载下。在偏振下老化试验后100小时后,允许这些方法将阳极鉴定为最多受影响的细胞分量,以在100小时后的偏振中的降解。

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