首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Analysis of long-lived radionuclidic impurities in short-lived radiopharmaceutical waste using gamma spectrometry.
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Analysis of long-lived radionuclidic impurities in short-lived radiopharmaceutical waste using gamma spectrometry.

机译:长期存在的放射性核素分析杂质短暂的使用γ放射性药物浪费谱分析。

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摘要

Large hospitals and biomedical research centers utilize decay-in-storage programs to minimize the volume of their low level radioactive waste. However, some medically useful radionuclides often contain small amounts of long-lived radionuclidic impurities which may complicate simple waste management procedures. We have evaluated the extent of this problem in low level radioactive waste involving 67Cu and (111)In over a 6-mo cycle of decay-in-storage by identifying the residual radionuclides in our dry waste using a multichannel analyzer. The multichannel analyzer was also used to quantify the radionuclide constituents of our liquid waste at the beginning of a decay-in-storage cycle. Radionuclides were identified by the presence of characteristic photopeaks of each isotope in the gamma spectrum and quantified by region of interest analysis. After a decay-in-storage cycle, long-lived 58Co, 57Co, and 56Co isotopes were observed in dry 67Cu waste and (114m)In identified in dry (111)In waste. The (114m)In was detected in dry (111)In waste containing initial (114m)In activity of 740 kBq (20 microCi), while the cobalt radionuclides were detected in dry 67Cu waste containing initial 58Co, 57Co, and 56Co activities of 444, 148, and 148 kBq (12, 4, and 4 microCi), respectively. Such dry low level radioactive waste was thus disqualified from short-term radioactive waste storage programs. The radionuclide constituents in the liquid waste were quantified in microCi mL(-1) and confirmed to be within the Nuclear Regulatory Commission set limits of 2 x 10(-4), 6 x 10(-4) and 6 x 10(-5) microCi mL(-1) for 58Co, 57Co, and 56Co, respectively, before disposal. The highest levels of long-lived isotopes that have been found in our liquid low level radioactive waste at the beginning of decay-in-storage were 5.5 x 10(-4), 4.8 x 10(-4), and 1.4 x 10(-4) microCi mL(-1) for 58Co, 57Co, and 56Co, respectively. Gamma spectrometry can be used to aid waste segregation and final management decisions on low level radioactive waste.
机译:大型医院和生物医学研究中心利用decay-in-storage程序最小化低水平放射性废物的体积。然而,一些医学上有用的放射性核素通常包含少量的长寿放射性核素杂质可能复杂化简单的废物管理程序。评估这个问题在低水平的程度涉及67立方的放射性废物和(111)6个周期decay-in-storage通过识别剩余放射性核素在我们干浪费使用多通道分析仪。分析仪也被用来量化放射性核素成分的液态废物decay-in-storage周期的开始。放射性核素识别的存在光峰的每个同位素特征γ谱和量化的地区利益分析。周期,长寿58有限公司57有限公司和56同位素观察在干燥67立方浪费和(114米)确定在干(111)浪费。发现在废物含有初始干(111)(114) 740 kBq (20 microCi),活动时间钴检测到了放射性核素干燥67铜废料含有初始58有限公司57有限公司56公司活动的444、148和148 kBq (12 4和4 microCi)。放射性废物是因此取消短期放射性废物存储程序。液体废物的放射性核素成分量化在microCi毫升(1)和确认在美国核管理委员会2 x 10(4)设置限制,6 x 10(4)和6 x10 (5) microCi毫升(1)58有限公司57有限公司56有限公司之前,分别处理。已发现的长寿的同位素我们的液体的低水平放射性废物开始decay-in-storage 5.5 x 10 (4),4.8 x 10 (4), 1.4 x 10 (4) microCi毫升(1)58有限公司57有限公司分别和56个公司。光谱法可用于援助废物隔离和最终的管理决策水平低放射性废物。

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