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Sequential Injection Separation System with Stopped-Flow Radiometric Detection for Automated Analysis of ↑(99)Tc in Nuclear Waste

机译:带停流辐射检测的顺序注入分离系统用于核废料中↑(99)Tc的自动分析

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摘要

An antomated procedure for the determination of ↑(99)Tc in aged nuclear waste has been developed. Using advanced Sequential injection(SI) analysis instrumentation,↑(99)Tc in is separated from radioactive and stable interferences using a TEVA resin column that selectively retains pertechnetate ion from dilute nitric acid solutions. The separated ↑(99)Tc is eluted with 6 M nitric acid and quantified on-line with a flow-through liquid scintillation detector. A stopped-flow technique has been optimized that improves the analysis precision and detection limit compared to continuous-flow detection, reduces consumption of liquid scintillation cocktail, and increases sample throughput by separating the next sample while the present sample is being counted. The detection limit is 30 pCi, or 2 ng, of ↑(99)Tc, using a 15-min stopped-flow period. The analysis time is 40-min for the first sample and is reduced to 20 min for each subsequent sample. Processed nuclear waste samples from the Hanford site were successfully analyzed by this new method.
机译:已开发出一种测定阳极核废料中↑(99)Tc的原子化程序。使用先进的顺序注入(SI)分析仪器,使用TEVA树脂柱将↑(99)Tc in与放射性和稳定干扰物分离,该柱子选择性地保留了稀硝酸溶液中的高tech酸根离子。分离的↑(99)Tc用6 M硝酸洗脱,并使用流通式液体闪烁检测器在线定量。与连续流检测相比,停止流技术已得到优化,可提高分析精度和检测极限,减少液体闪烁混合物的消耗,并通过在计数当前样品时分离下一个样品来提高样品通量。使用15分钟的停止流动时间,检出限为↑(99)Tc的30 pCi或2 ng。第一个样品的分析时间为40分钟,随后的每个样品的分析时间减少为20分钟。用这种新方法成功地分析了汉福德基地的处理过的核废料样品。

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