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Nickel oxide powder material for solid oxide fuel cell, production process thereof, raw material composition for use, in the same, and anode material using the nickel oxide powder material

机译:用于固体氧化物燃料电池的氧化镍粉末材料,其制造方法,其使用的原料组合物以及使用该氧化镍粉末材料的负极材料

摘要

This invention provides a nickel oxide powder material, a production process thereof with high efficiency, a raw material composition for use in the same, and an anode material using the nickel oxide powder material. The nickel oxide powder material, when used as an anode material for a solid oxide fuel cell, can reduce heat shrinkage percentage in calcination to reduce a shrinkage difference from other component, and can suppress the occurrence of cracking, delamination, warpage and the like during calcining. Also in power generation after re-reduction after exposure of the anode once to an oxidizing atmosphere, for example, due to the disruption of the fuel supply, deterioration of microstructure of the anode can be suppressed, and the voltage drop percentage of the cell can be reduced. The nickel oxide powder material is used in an anode material constituting a solid oxide fuel cell and is characterized in that spinel compound represented by compositional formula: NiM2O4 wherein M represents a metal element is formed inside the nickel oxide powder, wherein said metal element M is at least one element selected from Cr, Mn, Fe, Mo, Ga, La, or Nd.
机译:本发明提供氧化镍粉末材料,其高效的生产方法,用于其的原料组合物以及使用该氧化镍粉末材料的负极材料。氧化镍粉末材料当用作固体氧化物燃料电池的阳极材料时,可以降低煅烧中的热收缩率,以减小与其他组分的收缩差,并且可以抑制在加工过程中产生龟裂,分层,翘曲等。煅烧。同样,在将阳极一次暴露于氧化气氛后再还原之后的发电中,例如,由于燃料供应的中断,可以抑制阳极的微观结构的劣化,并且可以降低电池的电压降百分比。减少。氧化镍粉末材料用于构成固体氧化物燃料电池的负极材料,其特征在于在氧化镍粉末的内部形成有由组成式NiM2O4表示的尖晶石化合物,其中M表示金属元素,其中所述金属元素M为选自Cr,Mn,Fe,Mo,Ga,La或Nd中的至少一种元素。

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