Bradley Veronica C, Burleson Jacob, Andrews Hunter B, Thompson Cyril V, Spano Tyler L, Dunlap Daniel R, Zirakparvar N Alex, Ticknor Brian W, Hexel Cole R, Manard Benjamin T
Chemical Sciences Division, Oak Ridge National Laboratory, USA.
Radioisotope Science and Technology Division, Oak Ridge National Laboratory, USA.
Analyst. 2024 Apr 15;149(8):2244-2251. doi: 10.1039/d3an02101g.
A microextraction liquid sampling system coupled to a quadrupole inductively coupled plasma-mass spectrometer (ICP-MS) was utilized to spatially discern uranium particles, isotopically, on a cellulose-based swipe material (, J-type swipe). These types of swipes are often used by the International Atomic Energy Agency (IAEA) as part of their environmental sampling program. A grid was created such that extraction locations covered the center circle ( = 34 without overlapping). Uranium (U) particulates (<20 μm) of varying U isotopic abundance and chemical form (, uranyl fluoride and uranyl nitrate hexahydrate) were mechanically placed on the swipes in random locations and detected the microextraction-ICP-MS methodology. Heat maps were subsequently generated to show the placement of the particulate with their respective intensity and isotopic determination. This detection of the uranium particulates, isotopic determination, agreed with reference values for these materials. Additionally, depleted (U/U = 0.002) uranium particulates were placed directly within a clay matrix, on the swipe surface, and subjected to analysis by microextraction-ICP-MS. The mapping of the swipe demonstrated, for the first time, the employment of the microextraction-ICP-MS method for extracting sample from a complex matrix, and correctly identifying the uranium isotopic composition. This example ultimately demonstrates the utility of the methodology for detecting particles of interest in complex matrices.
一个与四极杆电感耦合等离子体质谱仪(ICP-MS)联用的微萃取液体采样系统被用于在基于纤维素的擦拭材料(J型擦拭布)上对铀颗粒进行空间分辨和同位素分析。国际原子能机构(IAEA)在其环境采样计划中经常使用这类擦拭布。创建了一个网格,使萃取位置覆盖中心圆(直径 = 34,无重叠)。将具有不同铀同位素丰度和化学形态(如氟化铀酰和硝酸铀酰六水合物)的铀(U)颗粒(<20μm)随机放置在擦拭布上,并通过微萃取-ICP-MS方法进行检测。随后生成热图以显示颗粒的位置及其各自的强度和同位素测定结果。对铀颗粒的这种检测以及同位素测定结果与这些材料的参考值相符。此外,贫化铀颗粒(U/U = 0.002)被直接放置在擦拭布表面的粘土基质中,并通过微萃取-ICP-MS进行分析。擦拭布的图谱首次证明了微萃取-ICP-MS方法可用于从复杂基质中提取样品,并正确识别铀的同位素组成。这个例子最终证明了该方法在检测复杂基质中感兴趣颗粒方面的实用性。