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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Relationships between experimental signatures and processing history for a variety of PuO2 materials
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Relationships between experimental signatures and processing history for a variety of PuO2 materials

机译:各种PUO2材料实验签名与加工史的关系

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摘要

The primary oxide of plutonium, PuO2, is a complex material due to ongoing change in lattice structure resulting from radioactive alpha decay. In addition, the element plutonium is complex, existing in various allotropes, which can influence formation of oxides due to different nucleation and growth mechanisms. The juxtaposition of these unique properties, along with formation conditions of the initial oxide, makes for PuO2 materials with a wide variety of local and bulk experimental signatures. This work measures these signatures with X-ray diffraction and Raman spectroscopy from five different oxide materials, and relates these signatures to specific PuO2 production and aging routes. This information is of potential use in nuclear fuels processing and production, nuclear non-proliferation, forensics analyses, and interplanetary power sources. Published by Elsevier B.V.
机译:由于放射性α衰减引起的晶格结构的持续变化,钚PUO2的原氧化物是复杂的材料。 此外,元素钚是复杂的,存在于各种同种异体上,其可以影响由于不同的成核和生长机制引起的氧化物的形成。 这些独特性质的并置以及初始氧化物的形成条件,使PUO2材料具有各种局部和散装实验鉴定。 该工作测量与来自五种不同氧化物材料的X射线衍射和拉曼光谱法测量这些签名,并将这些签名与特定的PUO2生产和老化途径相关。 该信息具有核燃料加工和生产,核不扩散,取证分析和行星际电源的潜在用途。 由elsevier b.v出版。

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