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Distribution characteristics of radionuclides in high-temperature melt phase during melt decontamination of decommissioned metal waste

机译:退役金属废物熔融净化过程中高温熔融相中放射性核素的分布特征

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摘要

The purpose of this paper is to investigate radionuiclides under various melting conditions that influence their distribution behavior during contaminated metal waste melting. Radioisotopes ~(60)Co, and ~(137)Cs were artificially used as the model contaminants. Most of the ~(60)Co remained in the ingot phase homogeneously and was barely present in the slag phase. The ~(137)Cs nuclides leave the melt caused by volatilization, and are essentially transferred to the slag and dust phase. They are then retained by filter systems. The captured ~(137)Cs in the slag phase is about 9% and 12% at a basicity of 0.82 and 1.42 respectively. The results of the demonstration test performed with a withdrawed steam generator from Young-Kwang Nuclear Power Plant shows that cobalt was distributed homogeneously on the ingot phase.
机译:本文的目的是研究放射性核素在各种熔化条件下的影响,这些放射性核素会在受污染的金属废物熔化期间影响其分布行为。放射性同位素〜(60)Co和〜(137)Cs被人工用作模型污染物。大部分〜(60)Co均匀地保留在铸锭相中,而几乎不存在于炉渣相中。 〜(137)Cs核素由于挥发而离开熔体,并基本上转移到炉渣和粉尘相。然后将它们保留在过滤器系统中。在碱度为0.82和1.42的情况下,在渣相中捕获的〜(137)Cs分别约为9%和12%。用永光核电站抽出的蒸汽发生器进行的示范试验结果表明,钴在铸锭相上均匀分布。

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