利用伽马辐射扫描验证核废料泥孔

IF 0.6
J. Johnston, Shuwei Yue, J. Stewart
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引用次数: 0

摘要

Chalk River实验室(CRL)的核废物管理设施使用地下“瓷砖洞”来储存医疗同位素生产等各种活动产生的固体废物。经过长时间的同位素衰变,一些废物已经衰变到低放射性,可以转移到低放射性废物储存设施。本文提出了一种通过沿废物储存砖孔深度进行伽马辐射扫描来验证砖孔内废物辐射水平的方法。这种测量允许对砖孔内容物进行无创验证,并为评估与废物去除相关的放射性风险提供输入。使用辐射剖面系统,可以基于辐射剖面来识别放射性废物的辐射水平。这些信息将支持规划将这些废物转移到为低放射性废物设计的有许可证的废物储存设施的可能性,从而腾出储存空间,以便对更高放射性废物进行瓦孔再利用。CRL开发的基于二极管的小型伽马辐射传感器已用于这些辐射扫描。二极管传感器被部署在瓷砖孔附近的验证管中,以测量辐射剖面。自2009年以来,已经使用该技术扫描了超过10个瓷砖孔。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
VERIFYING NUCLEAR WASTE TILE-HOLES USING GAMMA RADIATION SCANNING
Nuclear waste management facilities at Chalk River Laboratories (CRL) use below-ground “tile-holes” to store solid waste from various activities such as medical isotope production. After long periods of isotopic decay, some of the waste has decayed down to low activities and can be transferred to low-level waste storage facilities. This paper presents a method to verify the radiation level of the waste inside tile-holes by performing gamma radiation scans along the depth of waste storage tile-holes. Such measurements allow for noninvasive verification of tile-hole contents and provide input to the assessment of radiological risk associated with removal of the waste. Using the radiation profile system, the radiation level of the radioactive waste may be identified based on the radiation profile. This information will support planning for possible transfer of this waste to a licensed waste storage facility designed for low-level waste, thus freeing storage space for possible tile-hole re-use for more highly radioactive waste. CRL-developed small diode-based gamma radiation sensors have been used in these radiation scans. The diode sensors were deployed into verification tubes adjacent to the tile-holes to measure the radiation profile. Over 10 tile-holes have been scanned using this technique since 2009.
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来源期刊
CNL Nuclear Review
CNL Nuclear Review NUCLEAR SCIENCE & TECHNOLOGY-
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