Connor J Parker, Kathryn M Peruski, Samantha K Cary
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引用次数: 0
摘要
通过辐照镎237(237Np)目标材料来生产钚238,并将其用于放射性同位素热电发电机,这对于继续进行深空探测至关重要。这项工作利用扫描电子显微镜分析 237Np 材料,并结合完善的图像分析框架(材料归属形态分析,或 MAMA)来确定材料的微米级均匀程度。这项工作展示了颗粒特征的量化如何验证生产材料并确认显微照片中观察到的定性相似性。237Np 氧化物颗粒分析表明,来自五次生产运行的材料在颗粒面积、圆度、等效圆直径和椭圆长宽比方面具有定量同质性(α = 0.05 时显著),其中两个取样日期的四个特征之一的平均值差异具有统计学意义。这些指标不仅证实了材料的总体均匀性,还将 MAMA 工作流程的应用扩展到了 237Np 材料,证明了 MAMA 分析在比以往报告更广泛的核材料中的实用性。在公开文献中,这项研究是首次将这些微分析技术应用于 237Np 材料。
Quantitative Particle Analysis of Neptunium-237 Oxides: Optimization of MAMA Analysis for Modified Direct Denitration Products.
The production of plutonium-238 through irradiation of neptunium-237 (237Np) target materials for the use in radioisotope thermoelectric generators is paramount for continued deep space exploration. This work employs scanning electron microscopy to analyze 237Np materials coupled with a well-developed image analysis framework (Morphological Analysis for Material Attribution, or MAMA) to determine the degree of micron-scale homogeneity in the materials. This work demonstrated how the quantification of particle characteristics can validate production materials and affirm the qualitative similarities observed in micrographs. The 237Np oxide particle analysis determined that the materials from five production runs were quantitatively homogenous (significant at α = 0.05) in particle area, circularity, equivalent circular diameter, and ellipse aspect ratio, with two of the sampling dates having statistically significant different means for one of the four characteristics. These metrics not only confirm general homogeneity of the material but also expand the application of MAMA workflows to 237Np materials, demonstrating the utility of MAMA analysis for a wider breadth of nuclear materials than previously reported. In the open literature, this study is the first time that these microanalytical techniques were applied to 237Np materials to this degree.
期刊介绍:
Microscopy and Microanalysis publishes original research papers in the fields of microscopy, imaging, and compositional analysis. This distinguished international forum is intended for microscopists in both biology and materials science. The journal provides significant articles that describe new and existing techniques and instrumentation, as well as the applications of these to the imaging and analysis of microstructure. Microscopy and Microanalysis also includes review articles, letters to the editor, and book reviews.