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UHEXRF Applications to the Nuclear Fuel Cycle

机译:UHEXRF在核燃料循环中的应用

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Ultrahigh energy X-ray fluorescence (UHEXRF) utilizes high energy excitation at 123 keV to directly detect and quantify uranium and plutonium through container walls. In this work the excitation beam of 123 keV is produced on the 6-ID-D beam line of the Advanced Photon Source at Argonne National Laboratory. This energy is sufficient to excite both the uranium Kα1 and plutonium Kα1 lines at 98.428 keV and 103.653 keV respectively. Several sample types have been measured with this approach including: dried spot residues of actual nuclear spent fuel and plutonium spiked synthetic spent fuel dried spot residues. In addition, a mock fuel rod containing model fuel pellets consisting of thorium oxide and uranium oxide with a stearic acid binder was also characterized. The thorium-uranium mixture provides a convenient model for the uranium-plutonium heavy metal ratio of actual spent fuel. The mock fuel rod used a typical Zircaloy tubing of around 600 micrometers thick. The Pu spiked standards were used to create a calibration of Pu intensity with known mass in the deposit to quantify the Pu in the spent fuel samples. UHEXRF has significant potential for nondestructive direct quantification of actinides through container walls. Use of the Advanced Photon Source, an Office of Science User Facility operated for the U.S. Department of Energy (DOE) Office of Science by Argonne National Laboratory, was supported by the U.S. DOE under Contract No. DE-AC02-06CH11357. The authors would like to acknowledge the support of the DOE Defense Nuclear Nonproliferation R&D for financial support of this research effort.
机译:超高能X射线荧光(UHEXRF)利用123 keV的高能激发来直接检测和定量通过容器壁的铀和p。在这项工作中,在Argonne国家实验室的高级光子源的6-ID-D光束线上产生了123 keV的激发光束。该能量足以激发分别以98.428 keV和103.653 keV的铀Kα1和pKα1谱线。用这种方法测量了几种样品类型,包括:实际核废燃料的干点残渣和掺spike的合成乏燃料的干点残渣。另外,还表征了模拟燃料棒,其包含由氧化or和氧化铀与硬脂酸粘合剂组成的模型燃料芯块。 or铀混合物为实际乏燃料的铀-重金属比提供了一个方便的模型。模拟燃料棒使用的典型的Zircaloy管道厚约600微米。使用Pu掺入的标准品对沉积物中已知质量的Pu强度进行校准,以量化乏燃料样品中的Pu。 UHEXRF具有通过容器壁对act系元素进行无损直接定量的巨大潜力。高级光子源的使用是由美国国家能源部根据合同号DE-AC02-06CH11357为美国能源部(Argonne National Laboratory)在美国能源部(DOE)科学办公室运营的科学用户设施办公室提供的。作者要感谢美国能源部国防核不扩散研究与开发对这项研究工作的财政支持。

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