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Laser decontamination of the radioactive lightning rods

机译:放射性避雷针的激光净化

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Between 1970 and 1980 Brazil experienced a significant market for radioactive lightning rods (RLR). The device consists of an air terminal with one or more sources of americium-241 attached to it. The sources were used to ionize the air around them and to increase the attraction of atmospheric discharges. Because of their ineffectiveness, the nuclear regulatory authority in Brazil suspended the license for manufacturing, commerce and installation of RLR in 1989, and determined that the replaced RLR were to be collected to a centralized radioactive waste management facility for treatment. The first step for RLR treatment is to remove the radioactive sources. Though they can be easily removed, some contaminations are found all over the remaining metal scrap that must decontaminated for release, otherwise it must be treated as radioactive waste. Decontamination using various chemicals has proven to be inefficient and generates large amounts of secondary wastes. This work shows the preliminary results of the decontamination of ~(241)Am-contaminated metal scrap generated in the treatment of radioactive lightning rods applying laser ablation. A Nd:YAG nanoseconds laser was used with 300 mj energy leaving only a small amount of secondary waste to be treated.
机译:在1970年至1980年之间,巴西经历了放射性避雷针(RLR)的重要市场。该设备由一个空气终端组成,该终端带有一个或多个sources241气源。这些源被用来使周围的空气离子化,并增加大气放电的吸引力。由于其无效性,巴西核监管机构于1989年中止了RLR的制造,商业和安装许可,并确定将替换后的RLR收集到集中式放射性废物管理设施中进行处理。 RLR治疗的第一步是去除放射源。尽管它们很容易清除,但在剩余的所有金属废料中都发现了一些污染物,必须对其进行净化处理才能释放污染物,否则必须将其视为放射性废物。事实证明,使用各种化学物质进行的去污效率低下,并且会产生大量二次废物。这项工作显示了在对采用激光烧蚀的放射性避雷针进行处理时产生的〜(241)Am污染的金属废料进行去污的初步结果。使用Nd:YAG纳秒激光,能量为300 mj,仅留下少量待处理的二次废物。

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