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首页> 外文期刊>Analytical chemistry >Characterization of the Chemical Composition of Uranium Microparticles with Irregular Shapes Using Standardless Electron Probe Microanalysis and Micro-Raman Spectrometry
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Characterization of the Chemical Composition of Uranium Microparticles with Irregular Shapes Using Standardless Electron Probe Microanalysis and Micro-Raman Spectrometry

机译:使用标准电子探针微分析和微拉曼光谱法具有不规则形状的铀微粒化学成分的表征

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摘要

We describe an approach enabling the identification of the elemental composition of uranium microparticles with undefined geometry using standardless quantitative electron probe microanalysis (EPMA) and micro-Raman spectrometry (MRS). The standardless procedure is based on a ZAF peak-to-background quantitative method in combination with Monte Carlo simulations. The experimental X-ray spectra were measured with an energy-dispersive spectrometer attached to a scanning electron microscope. To account for the X-ray intensity loss due to the transmission of electrons in microparticles with irregular shapes, a method was developed enabling the determination of an apparent thickness of the particle by means of the mean distance that electrons travel inside the particle before being transmitted. Size effects were further taken into account by using peak-to-background ratios and performing simulations on a particle with a thickness equal to the apparent thickness. To assess the validity of the standardless procedure in EPMA, weight fractions were determined for NIST homogeneous spherical microparticles of K411 glass and compared to certified ones. The correction of size effects was achieved and lead to accurate quantitative results with absolute relative deviations less than 9%. The model used for the determination of the apparent thickness was validated on the set of spherical K411 particles and enabled us to conduct quantifications on irregularly shaped uranium microparticles. The chemical composition of uranium particles was further investigated using MRS which enabled us to verify the reliability of the results obtained by the standardless approach.
机译:我们描述了一种方法,使得使用标准定量电子探针微分析(EPMA)和微拉曼光谱法(MRS)使用标准定量电子探针微透析(MRS)的未定义几何形状的铀微粒的元素组成。标准步骤基于ZAF峰背景定量方法与蒙特卡罗模拟相结合。用连接到扫描电子显微镜的能量分散光谱仪测量实验X射线光谱。为了考虑由于具有不规则形状的微粒中电子的电子在微粒中产生的X射线强度损失,开发了一种方法,该方法通过电子在颗粒上传输之前的平均距离来确定颗粒的表观厚度。 。通过使用峰 - 背景比率和在厚度等于表观厚度的颗粒上执行模拟,进一步考虑尺寸效应。为了评估EPMA中标准程序的有效性,针对K411玻璃的NIST均匀球形微粒测定重量级分,并与经过认证的颗粒相比。达到尺寸效应的校正,并导致绝对相对偏差的准确定量结果小于9%。用于测定表观厚度的模型在该组球形K411颗粒上验证,使我们能够对不规则形状的铀微粒进行量化。使用MRS进一步研究了铀颗粒的化学成分,该方法使我们能够验证通过标准方法获得的结果的可靠性。

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