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Preconditioning of the YSZ-NiO Fuel Cell Anode in Hydrogenous Atmospheres Containing Water Vapor

机译:YSZ-NiO燃料电池阳极在含水蒸气的氢气氛中的预处理

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摘要

The YSZ–NiO ceramics for solid oxide fuel cells (SOFCs) anode have been investigated. A series of specimens were singly reduced in a hydrogenous atmosphere (Ar–5 vol% H2 mixture) at 600 °C under the pressure of 0.15 MPa or subjected to ‘reduction in the mixture–oxidation in air’ (redox) cycling at 600 °C. The YSZ–Ni cermets formed in both treatment conditions were then aged in ‘water vapor in Ar–5 vol% H2 mixture’ atmosphere at 600 °C under the pressure of 0.15 MPa. Additionally, the behaviour of the as-received material in this atmosphere was studied. It was revealed that small amount of water vapor in Ar–5 vol% H2 mixture (water vapor pressure below 0.03 MPa) does not affect the reduction of the nickel phase in the YSZ–NiO ceramics, but causes some changes in the YSZ–Ni cermet structure. In particular, nanopore growth in tiny Ni particles takes place. At higher concentration of water vapor in the mixture (water vapor pressure above 0.03–0.05 MPa), converse changes in the kinetics of reduction occur. The best physical and mechanical properties were revealed for the material treated by redox cycling after holding at 600 °C in water depleted gas mixture. The dual effect of water vapor on nickel-zirconia anode behaviour is discussed basing on scanning electron microscopy analysis data, material electrical conductivity, and strength.
机译:对用于固态氧化物燃料电池(SOFC)阳极的YSZ-NiO陶瓷进行了研究。在0.15°C的压力下于600°C的含氢气氛(Ar-5vol%的H2混合物)中将一系列试样单独还原,或在600°C循环下进行'混合物中的还原-空气中的氧化'(氧化还原) C。然后将在两种处理条件下形成的YSZ-Ni金属陶瓷在0.15MPa的压力下于600°C的“ Ar-5vol%H2混合物中的水蒸气”中老化。另外,还研究了这种材料在这种气氛下的行为。结果表明,Ar-5vol%H2混合物中的少量水蒸气(水蒸气压力低于0.03 MPa)不会影响YSZ-NiO陶瓷中镍相的还原,但会引起YSZ-Ni的某些变化金属陶瓷结构。特别地,在微小的镍颗粒中发生纳米孔生长。在混合物中水蒸气浓度较高时(水蒸气压力高于0.03-0.05MPa),还原动力学发生相反的变化。在缺水的气体混合物中保持600°C后,通过氧化还原循环处理的材料表现出最佳的物理和机械性能。基于扫描电子显微镜分析数据,材料电导率和强度,讨论了水蒸气对镍-氧化锆阳极行为的双重影响。

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