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利用鹦鹉螺号对铀钚混合氧化物颗粒进行分析及其对下一代核查挑战的启示

U-Pu Mixed Oxide Particle Analysis by NAUTILUS and Implications for Next-Generation Verification Challenges.

作者信息

Willingham David, Groopman Evan, Sangely Laure

机构信息

Materials Science and Technology Division, U.S. Naval Research Laboratory, Washington, DC 20375, United States.

Office of Safeguards Analytical Services, International Atomic Energy Agency, Vienna 1020, Austria.

出版信息

J Am Soc Mass Spectrom. 2020 Jul 8. doi: 10.1021/jasms.0c00097.

Abstract

Precise and accurate measurement of U and Pu isotopes from micrometer-sized particles represents new verification challenges for the International Atomic Energy Agency. The U and Pu isotopes and U-Pu elemental ratio provide valuable information about the intended use, the production process, and the purification process of Pu and mixed oxide (MOX) fuels. We demonstrate the ability to directly measure U and Pu isotopes from MOX fuel particles using the U.S. Naval Research Laboratory's Naval Ultra-Trace Isotope Laboratory's Universal Spectrometer (NAUTILUS). Reactor-grade MOX reference materials with well-characterized U and Pu isotopic composition (e.g., UKMOX10 and UKMOX100) were prepared using standard sample preparation methods for large geometry-secondary ion mass spectrometry (LG-SIMS). The results show that the NAUTILUS can discriminate the UH signal from Pu, enabling the accurate measurement of the Pu/Pu ratio for MOX particles within 2σ of the certificate value for U-Pu ratios from 3:1 to 300:1. The accuracy of previously reported LG-SIMS measurements was limited to U-Pu ratios <15:1. Using the NAUTILUS, the U/U, U/U, U/U, Pu/Pu, and Pu/Pu ratios for UKMOX10 and UKMOX100 can all be measured accurately within 2σ of the reference values, directly, without correction. The application of the NAUTILUS to the accurate and precise determination of the elemental and isotopic composition of MOX particles in environmental samples may unravel some emerging verification challenges in international safeguards.

摘要

对微米级颗粒中的铀(U)和钚(Pu)同位素进行精确测量,给国际原子能机构带来了新的核查挑战。U和Pu同位素以及U-Pu元素比提供了有关Pu和混合氧化物(MOX)燃料的预期用途、生产过程及纯化过程的宝贵信息。我们展示了使用美国海军研究实验室海军超痕量同位素实验室的通用光谱仪(NAUTILUS)直接测量MOX燃料颗粒中U和Pu同位素的能力。采用大几何尺寸二次离子质谱法(LG-SIMS)的标准样品制备方法,制备了具有特征明确的U和Pu同位素组成的反应堆级MOX标准物质(如UKMOX10和UKMOX100)。结果表明,NAUTILUS能够区分Pu中的UH信号,从而能够在U-Pu比为3:1至300:1的证书值的2σ范围内准确测量MOX颗粒的Pu/Pu比。先前报道的LG-SIMS测量精度仅限于U-Pu比<15:1。使用NAUTILUS,可以直接、无需校正地在参考值的2σ范围内准确测量UKMOX10和UKMOX100的U/U、U/U、U/U、Pu/Pu和Pu/Pu比。将NAUTILUS应用于准确测定环境样品中MOX颗粒的元素和同位素组成,可能会解决国际保障监督中一些新出现的核查挑战。

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