首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Rapid determination of actinides in urine by inductively coupled plasma mass spectrometry and alpha spectrometry: A hybrid approach
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Rapid determination of actinides in urine by inductively coupled plasma mass spectrometry and alpha spectrometry: A hybrid approach

机译:电感耦合等离子体质谱法和α光谱法快速测定尿液中的act系元素:一种混合方法

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摘要

A new rapid separation method that allows separation and preconcentration of actinides in urine samples was developed for the measurement of longer lived actinides by inductively coupled plasma mass spectrometry (ICP-MS) and short-lived actinides by alpha spectrometry; a hybrid approach. This method uses stacked extraction chromatography cartridges and vacuum box technology to facilitate rapid separations. Preconcentration, if required, is performed using a streamlined calcium phosphate precipitation. Similar technology has been applied to separate actinides prior to measurement by alpha spectrometry, but this new method has been developed with elution reagents now compatible with ICP-MS as well. Purified solutions are split between ICP-MS and alpha spectrometry so that long- and short-lived actinide isotopes can be measured successfully. The method allows for simultaneous extraction of 24 samples (including QC samples) in less than 3 h. Simultaneous sample preparation can offer significant time savings over sequential sample preparation. For example. sequential sample preparation of 24 samples taking just 15 min each requires 6 h to complete. The simplicity and speed of this new method makes it attractive for radiological emergency response. If preconcentration is applied, the method is applicable to larger sample aliquots for occupational exposures as well. The chemical recoveries are typically greater than 90%, in contrast to other reported methods using flow injection separation techniques for urine samples where plutonium yields were 70-80%. This method allows measurement of both long-lived and short-lived actinide isotopes. Pu-239. Pu-242, Np-237, Am-243, U-234, U-235 and U-238 were measured by ICP-MS, while Pu-236, Pu-238. Pu-239, Am-241, Am-243 and Cm-244 were measured by alpha spectrometry. The method can also be adapted so that the separation of uranium isotopes for assay is not required, if uranium assay by direct dilution of the urine sample is preferred instead. Multiple vacuum box locations may be set-up to supply several ICP-MS units with purified sample fractions such that a high sample throughput may be achieved, while still allowing for rapid measurement of short-lived actinides by alpha spectrometry.
机译:开发了一种新的快速分离方法,该方法可以分离和预浓缩尿液样品中的act系元素,用于通过电感耦合等离子体质谱(ICP-MS)测量寿命更长的act系元素和通过α光谱法测量寿命短的act系元素;混合方法。该方法使用堆叠式萃取色谱柱和真空箱技术来促进快速分离。如果需要,可以使用简化的磷酸钙沉淀进行预浓缩。在通过α光谱仪进行测量之前,类似的技术已应用于分离act系元素,但是这种新方法已经开发出了现在也与ICP-MS兼容的洗脱试剂。纯化的溶液在ICP-MS和α光谱仪之间划分,因此可以成功地测量长寿命和短寿命的act系元素同位素。该方法可在不到3小时的时间内同时提取24个样品(包括QC样品)。与顺序样品制备相比,同时进行样品制备可以节省大量时间。例如。 24个样品的顺序样品制备仅需15分钟,每个过程需要6小时才能完成。这种新方法的简单性和速度使其对放射应急响应具有吸引力。如果采用预浓缩,则该方法也适用于较大等分试样的职业暴露。与其他报道的使用流动注射分离技术对尿液样品进行where回收率为70-80%的方法相比,化学回收率通常大于90%。该方法可以测量长寿命和短寿命的act系元素同位素。 Pu-239。通过ICP-MS测量Pu-242,Np-237,Am-243,U-234,U-235和U-238,而Pu-236,Pu-238。通过α光谱法测量Pu-239,Am-241,Am-243和Cm-244。该方法也可以适用,使得如果优选通过直接稀释尿液样品进行铀测定,则不需要分离铀同位素进行测定。可以设置多个真空箱位置,以为多个ICP-MS单元提供纯化的样品馏分,从而可以实现高样品通量,同时仍然可以通过α光谱法快速测量短寿命的act系元素。

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