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Redox Cycling of Ni-Based Solid Oxide Fuel Cell Anodes: A Review

机译:镍基固体氧化物燃料电池阳极的氧化还原循环研究进展

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The published literature relating to damage to SOFCs caused by redox cycling of Ni-based anodes is reviewed. The review covers the kinetics of Ni oxidation and NiO reduction (as single phases and as constituents of composites with yttria-stabilised zirconia, YSZ), the dimensional changes associated with redox cycling and the effect of this on the mechanical integrity and electrical performance of cells and stacks. A critical parameter is the expansion strain that is caused by oxidation. Several studies report that the first complete oxidation of a Ni/YSZ composite causes a linear expansion of the order of 1%, but the actual values vary substantially between different investigations. The oxidation strain is the result of microstructural irreversibility during the redox process and leads to strain accumulation over several redox cycles. This can cause mechanical disruption to an anode, anode support or other cell components attached to the anode. A simplified mechanical model of the stress and damage that are likely to be caused by anode expansion is proposed and applied to anode-supported, electrolyte-supported and inert substrate-supported cell configurations. This allows the maximum oxidation strain to avoid damage in each configuration to be estimated.
机译:回顾了有关镍基阳极的氧化还原循环对SOFC造成损害的文献。综述涵盖了Ni氧化和NiO还原的动力学(作为单相和具有氧化钇稳定的氧化锆YSZ的复合材料的成分),与氧化还原循环有关的尺寸变化及其对电池机械完整性和电性能的影响和堆栈。关键参数是由氧化引起的膨胀应变。几项研究报告称,Ni / YSZ复合材料的首次完全氧化会导致线性膨胀达到1%左右,但实际值在不同研究之间存在很大差异。氧化应变是氧化还原过程中微观结构不可逆性的结果,并导致在几个氧化还原循环中积累应变。这可能导致对阳极,阳极支撑或其他连接到阳极的电池组件造成机械破坏。提出了一种可能由阳极膨胀引起的应力和破坏的简化机械模型,并将其应用于阳极支撑,电解质支撑和惰性衬底支撑的电池结构。这允许最大的氧化应变,以避免估计每种配置的损坏。

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