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Comparison of methods and application of alpha spectrometry and mass spectrometry techniques for 239Pu determination in biological samples

机译:用于生物样品中239Pu测定的α光谱和质谱技术的方法和应用的比较

摘要

This work describes two methods for rapid and simple preparation of urine samples for determining the 239Pu content. The preparation of the samples was carried out by evaporation or coprecipitation of Pu, followed by acidic digestion in a microwave oven. The concentration and purification of Pu were achieved by using ion exchange resins AG1X2 and AG1X8 (Bio-Rad Laboratories). The quantification of 239Pu was carried out employing three different instrumental techniques, the more conventional Alpha Spectrometry (AS), and two mass spectrometry methods: High-Resolution Inductively Coupled Plasma Mass Spectrometry (HR-ICP-MS) and a low-energy Accelerator Mass Spectrometry (AMS). The chemical yield was determined by AS being, on average, 76 ± 7%. The minimum detectable activity (MDA) for AS, HR-ICP-MS and AMS was, respectively, about 50 fg (∼0.1 mBq), 23 fg (∼0.05 mBq) and 0.44 fg (∼1 Bq) per sample, respectively. The results presented in this work demonstrate the excellent performance and suitability of the mass spectrometric techniques for the routine measurement of 239Pu at ultratrace levels in human urine samples, and also for the reassessing of AS planchets if it were needed. The application of HR-ICP-MS and low-energy AMS reduces the sample processing time, and helps us to improve the laboratory productivity, also giving better MDA values when compared to the classical radiometric methods. © 2011 The Royal Society of Chemistry.
机译:这项工作描述了两种快速而简单的尿液样品制备方法,以确定239Pu含量。样品的制备通过蒸发或共沉淀Pu进行,然后在微波炉中进行酸性消解。通过使用离子交换树脂AG1X2和AG1X8(Bio-Rad实验室)实现Pu的浓缩和纯化。 239Pu的定量采用三种不同的仪器技术,更常规的Alpha光谱法(AS)和两种质谱法:高分辨率感应耦合等离子体质谱法(HR-ICP-MS)和低能加速器质谱仪光谱分析(AMS)。通过AS确定化学收率平均为76±7%。每个样品的AS,HR-ICP-MS和AMS的最小可检测活性(MDA)分别约为50 fg(〜0.1 mBq),23 fg(〜0.05 mBq)和0.44 fg(〜1 Bq)。这项工作提出的结果证明了质谱技术的卓越性能和适用性,可用于在人类尿液样品中以超痕量水平进行239Pu的常规测量,以及在需要时可用于AS棘轮的重新评估。 HR-ICP-MS和低能耗AMS的应用减少了样品处理时间,并帮助我们提高了实验室生产率,与传统的辐射测定方法相比,MDA值也更高。 ©2011皇家化学学会。

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