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The effect of pore-former morphology on the electrochemical performance of solid oxide fuel cells under combined fuel cell and electrolysis modes

机译:孔隙原形态对燃料电池和电解模式下固体氧化物燃料电池电化学性能的影响

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The effect of the pore-former used in the Ni-YSZ fuel electrode on the electrochemical performance of solid oxide cells is studied. Three cells with the configuration of Ni-YSZ/YSZ/Nd2NiO4+delta-YSZ were fabricated with different pore-formers, such as graphite, PMMA (polymethyl methacrylate) or an equal mixture of both, which were added to the Ni-YSZ support during the fabrication process. The results show that the Ni-YSZ support containing graphite leads to a more porous support and formation of coarser pores in the vicinity of the electrolyte. This leads to a reduction in the triple phase boundary (TPB) length with a corresponding increase of activation polarization and, as a consequence, the overall cell performance decreases in both fuel cell and electrolysis modes. The cell having PMMA delivered the highest performance under both operation modes (818 and -713 mAcm(-2) were obtained in SOFC and SOEC modes at 800 degrees C), due to finer pores next to the electrolyte. The cell having the mixture of both pore-formers delivered intermediate results. All the cells show similar concentration polarization values meaning that even the least porous cell (PMMA) provided sufficient porosity for gas flow. In addition, long term reversible experiments were performed, showing no degradation for a period above 400 h. (c) 2018 Elsevier Ltd. All rights reserved.
机译:研究了在Ni-YSZ燃料电极上使用的孔前以前对固体氧化物细胞的电化学性能的影响。具有Ni-YSZ / YSZ / Nd2NiO4 + Delta-YSZ的构型的三个细胞用不同的孔制剂制造,例如石墨,PMMA(聚甲基丙烯酸甲酯)或两者的相同混合物,其加入Ni-YSZ载体中在制造过程中。结果表明,含有石墨的Ni-YSZ支撑件导致更多孔的载体和在电解质附近形成粗孔。这导致三相边界(TPB)长度的减小,相应地增加激活极化,因此,燃料电池和电解模式的整体细胞性能降低。具有PMMA在两个操作模式下提供最高性能的电池(818和-713 Macm(-2)在800℃)的SOFC和SOEC模式下,由于电解质旁边更细的孔。具有两种孔制剂的混合物的细胞递送中间结果。所有细胞都显示出类似的浓度偏振值,这意味着即使是最小多孔电池(PMMA)也为气流提供了足够的孔隙率。另外,进行长期可逆实验,显示出400小时以上的时间的降解。 (c)2018年elestvier有限公司保留所有权利。

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