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Instant Release Fractions from Corrosion Studies with High Burnup LWK Fuel

机译:高燃耗LWK燃料腐蚀研究中的即时释放分数

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During irradiation in the reactor, a fraction of the fission product inventory will have segregated either to the gap between the fuel and the cladding or to the grain boundaries in the fuel. Of these nuclides, the behavior of the fission gases is best known. The part of the inventory that is rapidly released upon contact with water is designated the instant release fraction (1RF). Previous studies have shown that 1RF and fission gas release (FGR) seem to be correlated. Studies of the instant release fraction from high burnup fuel is of interest for the assessment of the safety of a geological repository. The instant release fractions of ~(129)I and ~(137)Cs from five different light water reactor (LWR) fuel rods with a burnup range of 43 to 75 MWd/kgU and a fission gas release range from 0.9 to 5.0 % were studied. Four types of fuel samples (pellet, fragment, powder and fuel rodlet) have been used in the experiments. The results show that the fuel sample preparation method has a significant impact on the release from high burnup fuel samples over the time period covered by this study. Leaching of high burnup fuel samples with fuel detached from the cladding shows the highest release. The fractional ~(129)I release from such fragment samples is similar to the FGR in the corresponding rod. On the other hand, corresponding fractional release of ~(137)Cs is lower.
机译:在反应堆中进行辐照期间,一部分裂变产物库存将被隔离到燃料和覆层之间的间隙或燃料中的晶界。在这些核素中,裂变气体的行为最为人所知。与水接触后迅速释放的部分库存称为即时释放分数(1RF)。先前的研究表明1RF和裂变气体释放(FGR)似乎相关。高燃耗燃料的速释成分的研究对于评估地质储藏库的安全性非常重要。来自燃耗范围为43至75 MWd / kgU和裂变气体释放范围为0.9至5.0%的五个不同轻水反应堆(LWR)燃料棒的〜(129)I和〜(137)Cs的即时释放分数为研究过。实验中使用了四种类型的燃料样品(颗粒,碎片,粉末和燃料棒)。结果表明,在本研究涵盖的时间段内,燃料样品的制备方法对高燃耗燃料样品的释放有重大影响。从包层分离出的高燃耗燃料样品的浸出显示出最高的释放率。从此类碎片样品中释放的〜(129)I分数与相应棒中的FGR相似。另一方面,〜(137)Cs的相应分数释放较低。

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