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Technetium and Molybdenum in Oxide Spent Nuclear Fuel: Impact on Release Estimates

机译:氧化物核燃料中的Technetium和钼:对释放估计的影响

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Technetium-99 ( Tc) is an important radionuclide in repository models owing to its relatively long half-life and the high aqueous solubility of compounds where it is in the heptavalent state. The vast majority of the 99Tc inventory presently slated for disposal is contained in oxide commercial spent nuclear fuel (CSNF), where it is divided (along with its cohort, molybdenum) between exsolved, intermetallic "epsilon" particles and isolated, likely oxidized, atoms distributed in the uranium dioxide matrix. We present recent evidence from synchrotron x-ray fluorescence spectroscopy, electron microscopy, and fuel dissolution testing on the likely oxidation state, coordination environment, and physical disposition of technetium and molybdenum in CSNF. Effects of the relative proportioning of technetium and molybdenum among the metallic and oxidized states in CSNF, and their distribution in or near grain boundaries and gaps on release during CSNF corrosion testing are discussed.
机译:Technetium-99(TC)是由于其在七芳烃中的较长的半衰期和化合物的高水溶性,是储存库模型中的重要放射性核素。 目前载于处置的大多数99TC库存含有氧化物商业废弃的核燃料(CSNF),其中在exsolved,金属间“ε”颗粒和分离,可能被氧化,原子之间分开(以及其队列钼) 分布在二氧化硫基质中。 我们从同步X射线荧光光谱,电子显微镜和燃料溶解试验中提出了最近的氧化态,协调环境和钼和钼的燃料溶解试验。 讨论了CSNF中金属和氧化态中金属和氧化态的相对比例的影响及其在CSNF腐蚀试验中释放的晶界和近晶界和间隙的分布。

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