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Determination of depleted uranium in human hair by quadrupole inductively coupled plasma mass spectrometry: method development and validation

机译:四极电感耦合等离子体质谱法测定人发中贫铀的方法开发与验证

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摘要

The presence of depleted uranium (DU) in the environment and its possible transfer to humans has been a matter of concern for the potential risks to human health. Depleted uranium has been used for military purposes in the last few years of conflict due to its great availability and low cost. Uranium content has been mainly determined in biological fluids, such as urine and blood. Human hair can be considered as a good alternative indicator of exposure to DU thanks to its ability of accumulating chemical elements over a long period of time. Determining the isotopic composition of elements always requires using a sensitive and precise analytical technique. In this regard, isotope ratio quadrupole inductively coupled plasma mass spectrometry was considered as a qualified analytical technique and consequently employed in the present study in combination with a desolvating sample introduction system. The method was in-house validated at three different levels of concentration of depleted uranium (50, 500 and 1000 ng/l) according to common standards and guidelines. The limit of quantification of the method in hair was 7.21 μg/kg with a within-laboratory reproducibility, in terms of variation coefficient, of 16.8,6.1 and 5.5% for the three levels, respectively. A novel analytical approach was applied to the specificity studies for hair contaminated by DU with different background levels of NU.
机译:环境中贫铀(DU)的存在及其可能转移给人类的问题一直困扰着人类健康。贫铀由于其大量供应和低成本而在最近几年的冲突中被用于军事目的。铀的含量主要由尿液和血液等生物液体中确定。由于人类头发能够长时间积累化学元素,因此可以将其视为暴露于DU的良好替代指标。确定元素的同位素组成始终需要使用灵敏而精确的分析技术。在这方面,同位素比四极杆电感耦合等离子体质谱法被认为是一种合格的分析技术,因此在本研究中与脱溶剂样品引入系统结合使用。根据共同的标准和指南,在三种不同浓度的贫铀浓度(50、500和1000 ng / l)上对本方法进行了内部验证。该方法在头发中的定量限为7.21μg/ kg,这三个水平的变异系数分别为16.8、6.1和5.5%。一种新颖的分析方法被应用于具有不同背景水平的NU的被DU污染的头发的特异性研究。

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