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首页> 外文期刊>Analytical chemistry >EVALUATION OF THE PRECISION AND ACCURACY OF A URANIUM ISOTOPIC ANALYSIS USING GLOW DISCHARGE OPTOGALVANIC SPECTROSCOPY
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EVALUATION OF THE PRECISION AND ACCURACY OF A URANIUM ISOTOPIC ANALYSIS USING GLOW DISCHARGE OPTOGALVANIC SPECTROSCOPY

机译:辉光放电光电伏安法评价铀同位素分析的精密度和准确性

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摘要

The measurement precision and accuracy were evaluated for an isotopic analysis of uranium using diode laser-excited optogalvanic spectroscopy. The ratio of U-235/(U-235 + U-238) was measured using the 776 nn uranium isotope line for five samples ranging from depleted to enriched U-235 composition. The percent relative error (accuracy) with respect to thermal ionization measurements ranged from 2.38% for a nominally 20% enriched U-235 sample to slightly greater than 30% error for a depleted one. Run-to-run, day-to-day, and sample-to-sample precision (repeatability) were measured using an enriched sample; the run-to-run precision ranged from +/-1.9% to +/-5.5% RSD, and the day-to-day precision was +/-2.6% RSD. The sample-to-sample precision, determined using three different cathodes, was found to be +/-13.5% RSD. The ratios showed no trends or biases, varying about a mean of 0.21 and ranging from a high of similar to 0.23 to a low of 0.18. A search was conducted for a stronger atomic Line and a matching higher power diode laser in an attempt to improve the signal-to-noise ratio for the depleted case. Using a 150 mW diode laser that produced nominally 42 mW chopped power at 831.84 mn, a depleted uranium oxide sample was found to contain 0.26% U-235, within 3.7% of the value found using thermal ionization mass analysis. Using this same laser, the run-to-run reproducibility improved to +/-7.8% from +/-13.6%. This level of accuracy and precision is sufficient for screening applications, where preliminary information about the isotopic composition of a sample provides the incentive for additional analysis using more precise techniques.
机译:使用二极管激光激发的光电光谱法对铀的同位素分析评估了测量精度和准确性。 U 235 /(U-235 + U-238)的比例是使用776 nn铀同位素线对从贫化到富集的U-235组成的五个样品进行测量的。相对于热电离测量的相对误差百分比(准确度)从标称20%富集的U-235样品的2.38%到耗尽的U-235样品的稍大于30%的误差。使用富集的样品测量了批次间,日常和样品间的精密度(重复性)。逐次运行精度介于+/- 1.9%至+/- 5.5%RSD之间,日常精度为+/- 2.6%RSD。发现使用三个不同的阴极测定的样品间精度为+/- 13.5%RSD。比率没有趋势或偏差,平均值在0.21左右变化,范围从类似于0.23的高到0.18的低。试图寻找更强的原子线和匹配的更高功率的二极管激光器,以试图改善耗尽情况下的信噪比。使用150 mW的二极管激光器,在831.84百万处产生标称功率为42 mW的斩波功率,发现贫化的氧化铀样品中含有0.26%的U-235,在热电离质量分析发现的值的3.7%之内。使用相同的激光器,每次运行的重现性从+/- 13.6%提高到+/- 7.8%。这种精确度和精确度足以满足筛选应用的需要,在这些应用中,有关样品同位素组成的初步信息为使用更精确的技术进行其他分析提供了动力。

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