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STUDY FOR RADIONUCLIDE TRANSFER RATIO OF AEROSOLS GENERATED DURING HEAT CUTTING

机译:热切割过程中产生的气雾剂的放射性核素转移率研究

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The metallic elements with a low melting point and high vapor pressure seemed to transfer in aerosols selectively at dismantling reactor internals using heat cutting. Therefore, the arc melting tests of neutron irradiated zirconium alloy were conducted to investigate the radionuclide transfer behavior of aerosols generated during the heat cutting of activated metals. The arc melting test was conducted using a tungsten inert gas welding machine in an inert gas or air atmosphere. The radioactive aerosols were collected by filter and charcoal filter. The test sample was obtained from Zry-2 fuel cladding irradiated in a Japanese boiling water reactor for five fuel cycles. The activity analysis, chemical composition measurement and scanning electron microscope observation of aerosols were carried out. Some radionuclides were enriched in the aerosols generated in an inert gas atmosphere and the radionuclide transfer ratio did not change remarkably by the presence of air. The transfer ratio of Sb-125 was almost the same as that of Co-60. It was expected that Sb-125 was enriched from other elements since Sb is an element with a low melting point and high vapor pressure compared with the base metal (Zr). In the viewpoint of the environmental impact assessment, it became clear that the influence if Sb-125 is comparable to Co-60. The transfer ratio of Mn-54 was one order higher compared with other radionuclides. The results were discussed on the basis of thermal properties and oxide formation energy of the metallic elements.
机译:具有低熔点和高蒸气压的金属元素似乎在使用热切割的拆卸反应器内部形成的气溶胶中在气溶胶中转移。因此,进行了中子辐照锆合金的电弧熔化试验,研究了活性金属热切割过程中产生的气溶胶的放射性核素转移行为。在惰性气体或空气气氛中使用钨惰性气体焊接机进行电弧熔化试验。通过过滤器和木炭过滤器收集放射性气溶胶。从日本沸水反应器中照射的Zry-2燃料包层获得测试样品,用于五个燃料循环。进行了活性分析,化学成分测量和扫描电子显微镜观察气溶胶。一些放射性核素在惰性气体气氛中产生的气溶胶中富集,并且放射性核素转移比在空气存在下不会显着变化。 Sb-125的转移比与CO-60的转移比率几乎相同。预期从其他元素中富集Sb-125,因为与贱金属(Zr)相比,Sb是具有低熔点和高蒸气压的元素。在环境影响评估的观点中,如果SB-125与CO-60相当,则可以清楚地发挥作用。与其他放射性核素相比,Mn-54的转移比例较高。基于金属元素的热性质和氧化物形成能量讨论结果。

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