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首页> 外文期刊>Analytical chemistry >Determination of Uranium, Thorium, Plutonium, Americium, and Curium Ultratraces by Photon Electron Rejecting αLiquid Scintillation
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Determination of Uranium, Thorium, Plutonium, Americium, and Curium Ultratraces by Photon Electron Rejecting αLiquid Scintillation

机译:光子电子排斥α液体闪烁法测定铀,Thor,P,A和Cur的超痕量

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摘要

The determination of activities of thorium, uranium, plutonium, americium, and curium at very low levels has been performed by a new a liquid scintillation system (PERALS, name registered to Ordela, Inc.). The limit of detection has been determined for these nuclides with calculated values often lower than those obtained by other methods, like ICPMS/HP/Mistral, time-resolved laserinduced spectrofluorometry, and a spectrometry. All the results obtained show that the PERALS system is a promising method for the determination of these activities at very low levels. However, its energy resolution is inferior in comparison to that obtained by a spectrometry. For this reason, we have developed a process for separation of the five actinides as quickly and easily as possible. For each actinide, the conditions required to obtain extraction yields and a complete separation have been determined. It is possible to perform the separation in only six extraction steps and to measure activities as low as a few millibecquerels per liter independently. This process has been applied with success to French granitic mineral or doped water and to complex media (biological samples like urines). In tiffs latter case, the extraction recoveries are not quantitative, and it is necessary to determine the recovery yields by labeling with spikes like ↑(230)Th,↑(232)U, ↑(236)Pu, ↑(248)Cm, and ↑(148)Gd.
机译:新型液体闪烁系统(PERALS,Ordela,Inc.的注册名称)已用于测定very,铀,p,a和cur的极低活性。已经确定了这些核素的检出限,其计算值通常低于通过其他方法(如ICPMS / HP / Mistral,时间分辨激光诱导荧光法和光谱法)获得的计算值。所有获得的结果表明,PERALS系统是用于以非常低的水平测定这些活性的有前途的方法。但是,其能量分辨率比通过光谱法获得的能量分辨率差。因此,我们开发了一种尽可能快速,轻松地分离五个act系元素的方法。对于每种act系元素,已经确定了获得萃取得率和完全分离所需的条件。可能仅需六个提取步骤即可完成分离,并可以独立地测量低至几毫升/升的活性。此过程已成功应用于法国花岗岩矿物质或掺杂水以及复杂的介质(如尿液等生物样品)。在后一种情况下,提取回收率不是定量的,因此有必要通过标记诸如↑(230)Th,↑(232)U,↑(236)Pu,↑(248)Cm,和↑(148)Gd。

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