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Use of an Infrared Spectroscopic Method for Isotopic Analysis of Gaseous Uranium Hexafluoride

机译:红外光谱法在气态六氟化铀同位素分析中的应用

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A high performance infrared (HPIR) system was developed and demonstrated for the infrared absorption analysis of uranium-235 and uranium-238 isotopes in uranium hexafluoride gas samples. The method takes advantage of the recent commercial availability of quantum cascade lasers (QCL) and has required the use of advanced statistical data analysis, as well as materials selection due to the chemical reactivity of uranium hexafluoride gas. Sweeping the QCL over the spectral range and sampling via a high-rate analog-to-digital converter provided 0.0005 cm~(-1) spectral resolution, allowing for high-precision measurements of the isotopic peak shift. A data analysis method was developed using principal component analysis to predict the isotope weight percent content of uranium-235. The HPIR precision, accuracy, and error were evaluated for a wide range of isotopic ratio samples (0.287-93.7 weight percent uranium-235), and the results were compared to the International Target Values (ITVs) set forth by the International Atomic Energy Agency (IAEA) for nondestructive and destructive analytical techniques used in safeguards verification under the Treaty on the Non-proliferation of Nuclear Weapons. The method meets or surpasses the IAEA ITVs for nondestructive analysis of samples with isotopic content of depleted to highly enriched. The results also demonstrated the capability of the HPIR system to correctly predict the uranium-235 weight percent content of a mislabeled sample whose isotopic distribution was validated by mass spectroscopic measurements. The HPIR measurement is nondestructive and, thus, allows for confirmatory analyses of the exact sample at a designated IAEA laboratory if higher resolution or a certified analysis is needed.
机译:开发了一种高性能红外(HPIR)系统,用于六氟化铀气体样品中铀235和铀238同位素的红外吸收分析。该方法利用了量子级联激光器(QCL)最近的商业可用性,并要求使用先进的统计数据分析,以及由于六氟化铀气体的化学反应性而选择材料。在光谱范围内扫描QCL,并通过高速模数转换器进行采样,可提供0.0005 cm~(-1)的光谱分辨率,允许对同位素峰移进行高精度测量。利用主成分分析法建立了一种数据分析方法,用于预测铀-235的同位素重量百分比含量。对各种同位素比值样品(铀-235重量百分比为0.287-93.7)的HPIR精密度、准确度和误差进行了评估,并将结果与国际原子能机构(IAEA)针对《不扩散核武器条约》保障监督核查中使用的无损和破坏性分析技术设定的国际目标值(ITV)进行了比较。该方法满足或超过IAEA ITV对同位素含量从贫到高的样品进行无损分析的要求。结果还证明了HPIR系统能够正确预测错误标记样品的铀-235重量百分比含量,该样品的同位素分布通过质谱测量得到验证。HPIR测量是非破坏性的,因此,如果需要更高的分辨率或认证分析,可以在指定的IAEA实验室对准确样品进行确认分析。

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