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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Synthesis and characterization of zirconia-magnesia inert matrix fuel: Plutonium studies
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Synthesis and characterization of zirconia-magnesia inert matrix fuel: Plutonium studies

机译:氧化锆-镁惰性基质燃料的合成和表征:P研究

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This study uses a precipitation method to synthesize zirconia-magnesia inert matrix fuel containing plutonium oxide as the fissile material and erbium oxide as a burnable poison. X-ray diffraction, secondary electron microscopy with energy dispersive spectroscopy, optical microscopy, and electron probe microanalysis were used to determine phases present, phase mixing, microstructure, phase stoichiometry, and elemental distributions throughout the samples. A large range of magnesium to zirconium oxides as well as different concentrations of plutonium and erbium oxides was studied. It was found that it was possible to synthesize a two phase material consisting of a pure MgO (periclase) phase and a cubic zirconia phase which incorporated all of the plutonium and erbium as well as a small amount of the magnesium oxides. This information will be used to understand the dissolution behavior and properties of this material in conditions relevant to an advanced nuclear fuel cycle.
机译:本研究采用沉淀法合成了以氧化oxide为裂变材料,氧化为可燃毒物的氧化锆-镁惰性基质燃料。 X射线衍射,带能量色散光谱的二次电子显微镜,光学显微镜和电子探针显微分析用于确定样品中存在的相,相混合,微观结构,相化学计量和元素分布。研究了大范围的镁氧化物至锆氧化物以及不同浓度的p氧化物和氧化物。已发现可以合成由纯的MgO(过氧化物酶)相和立方氧化锆相组成的两相材料,其中包含了所有的and和以及少量的氧化镁。该信息将用于了解该材料在与先进核燃料循环有关的条件下的溶解行为和特性。

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