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首页> 外文期刊>Journal of hazardous, toxic and radioactive waste >Technical Management Assessment Guide to Historically Solid Radioactive Materials (Classes LLW and ILW): Case Study of the Greek Nuclear Research Reactor (GRR-1)
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Technical Management Assessment Guide to Historically Solid Radioactive Materials (Classes LLW and ILW): Case Study of the Greek Nuclear Research Reactor (GRR-1)

机译:技术管理评估指南历史悠久的稳固放射性物质(LLW和ILW类):希腊核研究反应堆的案例研究(GRR-1)

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The purpose of this work is the radioactive control of long-term-stored materials [historically radioactive waste, Types LLW (low-level waste) and ILW (intermediate-level waste)] in an interim storage room at a nuclear research reactor facility in Greece and their segregation into radioactive and cleared materials based on the dose rate and their surface contamination. The radioactive materials were spectroscopically evaluated to assess types of radionuclides and their activity. The results indicated that of the 122 stored items, 102 were classified as cleared materials and were removed for recycling, while 20 were spectroscopically evaluated as radioactively contaminated with ~(60)Co (1,332 and 1,173 keV) and ~(137)Cs (661 keV) and remained in storage. Exposure of the staff to radiation during the procedure was moreover assessed, and the dose was found between 0.7 and 7.5 μSv/day. These radiation exposure values were lower than the set local dose limit of 500 μSv set by the radiation protection officer for the duration of the work and significantly lower to the annual dose constraint of the facility of 6 mSv. Moreover, dose rates to nonhuman biota are, on the other hand, several orders of magnitude below the screening limit. Hence, we conclude with high confidence that by protecting humans the environment is also protected in this case. The main scientific contribution of this paper is to serve as a guide for handling stored historically radioactive materials in an interim storage room of a nuclear research reactor upon the criteria of (1) minimum radioactive exposure of staff; and (2) protecting biosystems against the potential disposal of radioactively contaminated materials therein.
机译:这项工作的目的是在核心研究反应堆设施中的临时储藏室中的长期存储材料的放射性控制[历史放射性废物,LLW(低级废物)和ILW(中间水平废物)]基于剂量率及其表面污染,希腊及其对放射性和清除材料的偏析。光谱评价放射性物质以评估放射性核素的类型及其活性。结果表明将122个储存的物品中的102分为清除材料,除去循环回收,而20被光谱评价为用〜(60)CO(1,332和1,173 keV)和〜(137)Cs(661)(661)的放射性污染kev)并留在储存。此外,员工在手术过程中辐射的暴露,并且剂量在0.7和7.5μSV/天之间。这些辐射曝光值低于辐射保护官设定的局部剂量限制为辐射保护官,在工作期间,并明显降低到6 msv的工厂的年剂量约束。此外,对非人生物群的剂量率是另一方面,低于筛选极限的几个数量级。因此,我们以高信任的信心结束,通过保护人类在这种情况下,环境也受到保护。本文的主要科学贡献是作为在核研究反应堆的临时储藏室中处理历史上放射性物质的历史放射性物质的指南,根据(1)员工最低放射性暴露的标准; (2)保护生物系统免受其中放射性污染材料的潜在处理。

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