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INVESTIGATION OF POLONIUM DECONTAMINATION FROM STAINLESS STEEL SURFACES USING THE BAKING METHOD

机译:用烘烤法研究不锈钢表面的LON去污染

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摘要

Polonium contamination on material surfaces has been considered one of the problems in the use of lead-bismuth eutectic (LBE) as a coolant and/or target in nuclear systems. Neutron-irradiated LBE contains polonium and can contaminate material surfaces of the primary loop in nuclear systems. Some methods for removal of polonium from neutron-irradiated LBE have been investigated. In this paper, the theory and the effectiveness of the baking method for polonium decontamination of a material surface contaminated by neutron-irradiated LBE are described. Theoretical investigation of the baking method was performed using Langmuir's equation. The effectiveness of the baking method was investigated by baking experiments using Type 316 stainless steel plates contaminated by neutron-irradiated LBE. The experimental results indicated that the baking method is effective for polonium decontamination when the baking temperature is more than 500℃ in a vacuum condition (0.4 Pa). The effective temperature for polonium decontamination of Type 316 plates differed from that of quartz glass plates previously reported. Comparing the experimental results and calculations of the evaporation rate of polonium compound by Langmuir 's equation showed that the difference in effective temperatures was due to the different chemical forms of polonium, i.e., elemental polonium and lead polonide.
机译:材料表面上的contamination污染已被认为是使用铅铋共晶(LBE)作为冷却剂和/或核系统靶材的问题之一。中子辐照的LBE含有contains,会污染核系统中初级回路的材料表面。研究了一些从中子辐照的LBE中除去po的方法。在本文中,描述了烘烤方法对被中子辐照的LBE污染的材料表面进行lon去污的理论和有效性。使用Langmuir方程对烘烤方法进行了理论研究。通过使用受中子辐照的LBE污染的316型不锈钢板的烘烤实验,研究了烘烤方法的有效性。实验结果表明,在真空条件下(0.4 Pa),焙烧温度大于500℃时,焙烧方法对po污染是有效的。 316型板对lon进行净化的有效温度与先前报道的石英玻璃板不同。比较实验结果和用Langmuir方程计算po化合物的蒸发速率表明,有效温度的差异是由于chemical的化学形式不同,即元素lon和po铅所致。

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