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首页> 外文期刊>Journal of the European Ceramic Society >Chemical durability and surface alteration of lanthanide zirconates (A2Zr2O7: A = La-Yb)
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Chemical durability and surface alteration of lanthanide zirconates (A2Zr2O7: A = La-Yb)

机译:镧系元素锆酸盐的化学耐久性和表面改变(A2ZR2O7:A = LA-YB)

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摘要

Chemical durability of lanthanide zirconates (A2Zr2O7) (A = La-Yb) under near-field environments is important for evaluating their application as potential nuclear waste forms. In this work, A2Zr2O7 (A = La-Yb) are synthesized by spark plasma sintering with controlled microstructure and their chemical durability are evaluated in a nitric acid solution (pH = 1). Scanning transmission electron microscopy analysis reveals an amorphous passivation film either enriched with Zr or lanthanide. The complex chemistry of the passivation films can be correlated with a transition in corrosion mechanisms from a preferential release of lanthanide in La2Zr2O7 to a preferential release of Zr in Er2Zr2O7 and Yb2Zr2O7. These results suggest a dominant mechanism of incongruent dissolution and surface reorganization for the formation of passivation films. Strong correlations are identified between the leaching rates and cation ionic size, ionic potential, electronegativity differences between A-site cation and Zr, and bonding valence sum of oxygen, suggesting important impacts of structural and bonding characteristics in controlling chemical durability of lanthanide zirconates.
机译:镧系锆酸盐(A2Zr2O7)(A=La-Yb)在近场环境下的化学耐久性对于评估其作为潜在核废物形式的应用非常重要。本文采用可控微结构的放电等离子烧结法合成了A2Zr2O7(A=La-Yb),并在硝酸溶液(pH=1)中对其化学稳定性进行了评估。扫描透射电子显微镜分析显示,非晶态钝化膜富含锆或镧系元素。钝化膜的复杂化学性质与腐蚀机制的转变有关,即从La2Zr2O7中的镧系元素优先释放到Er2Zr2O7和Yb2Zr2O7中的Zr优先释放。这些结果表明,钝化膜形成的主要机制是不一致溶解和表面重组。浸出率与阳离子离子尺寸、离子电位、A位阳离子和Zr之间的电负性差异以及氧的键价和之间存在很强的相关性,表明结构和键特征对控制镧系锆酸盐的化学耐久性具有重要影响。

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