首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A novel combined countercurrent chromatography - inductively coupled plasma mass spectrometry method for the determination of ultra trace uranium and thorium in Roman lead
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A novel combined countercurrent chromatography - inductively coupled plasma mass spectrometry method for the determination of ultra trace uranium and thorium in Roman lead

机译:一种新型逆流色谱 - 电感耦合等离子体质谱法测定罗马铅的超痕量铀和钍

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摘要

The concentration of uranium and thorium in lead shields, which are used in underground particle physics research, should be monitored at sub-ppt levels. A combination of extraction chromatography and inductively coupled plasma mass spectrometry can resolve this analytical task. However, a multi-step complicated separation procedure and clean room are required. Besides, the recovery yields for U and Th do not exceed 80% and 60%, correspondingly. We propose an alternative approach. U and Th were pre-concentrated and separated from Pb by countercurrent chromatography, which is a support-free liquid-liquid chromatography. A series of twophase extraction systems were tested. Under the optimized conditions, U and Th were extracted using a system 1 M HNO3/0.01 M tetraphenylmethylenediphosphine dioxide in chloroform and then eluted by 0.01 M aqueous solution of etidronic acid and determined by inductively coupled plasma mass spectrometry. The separation is performed in one chromatographic run, takes less than 1 h, and provides the quantitative recovery of U and Th. The limits of detection are 3 and 1 ppt for U and Th, correspondingly. The concentrations of U and Th in Roman lead, which was raised from the sea bottom, were lower than the limits of detection. It sounds unbelievable, nevertheless, the antique lead manufactured by Romans can indeed serve as a high-purity low-background material for the construction of Pb shields. Apart from the analysis of antique lead, the proposed approach can be easily extended to the determination of ultra trace impurities in different materials due to a very wide variety of two-phase extraction systems, which can be used in countercurrent chromatography.
机译:应在亚ppt水平下监测用于地下颗粒物理研究的铅屏蔽中铀和钍的浓度。提取色谱和电感耦合等离子体质谱的组合可以解决这种分析任务。但是,需要多步复制分离程序和洁净室。此外,u和Th的恢复产量不应超过80%和60%。我们提出了一种替代方法。通过逆流色谱法预浓缩和分离Pb,其是无载液 - 液相色谱法。测试了一系列纺纱萃取系统。在优化的条件下,使用氯仿中的系统1M HNO3 / 0.01M四苯基甲基二膦酰胺提取U和TH,然后通过电感耦合等离子体质谱法洗脱0.01M水溶液并通过电感耦合等离子体质谱。分离在一种色谱研发中进行,小于1小时,并提供U和Th的定量恢复。相应地,检测限为3和1 ppt。罗马铅的浓度从海底升高,低于检测限。然而,它听起来令人难以置信,罗马人制造的古董铅可以确实可以作为高纯度的低背景材料,用于施工PB屏蔽。除了对古董铅的分析之外,由于多种两相提取系统,所提出的方法可以很容易地扩展到不同材料中的超痕量杂质,这可以用于逆流色谱。

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