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Measurement of Plutonium in Large Concrete Radioactive Waste Packages by Photon Activation Analysis

机译:光子活化分析法测量大型混凝土放射性废物包装中的of

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摘要

Characterization of nuclear waste packages is crucial to optimize waste management (temporary storage, transport, final repository). Passive and active non-destructive methods are well-adapted to this problem and their coupling can be extremely useful in order to optimize data analysis. Photon activation analysis (PAA), based on the photofission process and on the detection of delayed particles emitted after this reaction, is a powerful tool for the analysis of bulky concrete waste packages. Methods developed around PAA allow to locate, identify and quantify the mass of actinides ($^{235}$U, $^{238}$ U, $^{239}$Pu) present in a given package in order to estimate its alpha activity. In this article, we present experimental and simulated results obtained in PAA during the characterization of a real nuclear waste package in the SAPHIR facility (Active Photon and Irradiation System). For the first time, several non-destructive methods (passive gamma-ray spectrometry, high-energy radiography) are combined with traditional PAA techniques (altitude scan, global photofission, photofission tomography) in order to optimize the characterization process.
机译:核废料包装的特性对优化废料管理(临时存储,运输,最终储存库)至关重要。被动和主动非破坏性方法非常适合此问题,它们的耦合对于优化数据分析非常有用。基于光裂变过程和检测此反应后发出的延迟颗粒的光子活化分析(PAA)是分析笨重的混凝土废物包装的有力工具。围绕PAA开发的方法允许对给定包装中存在的act系元素($ ^ {235} $ U,$ ^ {238} $ U,$ ^ {239} $ Pu)进行定位,鉴定和定量,以估算其包alpha活动。在本文中,我们介绍了在表征SAPHIR设施(有源光子和辐射系统)中的实际核废料包装过程中在PAA中获得的实验和模拟结果。为了优化表征过程,首次将几种非破坏性方法(被动伽马射线能谱法,高能射线照相术)与传统的PAA技术(高度扫描,全局光裂变,光裂变层析成像)相结合。

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