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Experimental improvements in sample preparation for the track registration technique from dry and solution media

机译:在干燥和溶液介质中进行轨道配准技术的样品制备的实验改进

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This paper describes the sample preparation Studies carried out to determine gross alpha activities in waste materials by means of alpha-particle track counting using CR-39 detector. Sample preparation for the track registration technique using evaporation or electroplating methods (also known as conventional "dry methods") has a number of drawbacks. The distribution of tracks in different areas of the detector Surface is non-uniform, so accurate quantitative determinations depend on tedious and time-consuming counting of tracks under an optical microscope. In this paper, we propose the use of tensioactives in sample preparation to achieve uniform track distribution over the entire detector surface, which enables track density to be evaluated by scanning a small representative area. Under our counting conditions, uniform distribution was achieved with 0.2 ml of Teg from a planchetted source. Furthermore, track registration techniques using solution media (also known as the "wet methods") and conventional "dry methods" were analysed and compared with the proposed method. The reproducibility of the procedure described in the study was tested by analysing gross alpha activity in two low-level nuclear waste samples at two different laboratories. =(c) 2005 Elsevier Ltd. All rights reserved.
机译:本文介绍了样品制备通过CR-39检测器通过α粒子跟踪计数来确定废料中总α活性的研究。使用蒸发或电镀方法(也称为常规“干法”)的用于轨道对准技术的样品制备具有许多缺点。轨迹在检测器表面的不同区域中的分布是不均匀的,因此准确的定量确定取决于光学显微镜下轨迹的繁琐且耗时的计数。在本文中,我们建议在样品制备中使用张力活性剂,以在整个检测器表面上实现均匀的轨迹分布,从而可以通过扫描较小的代表性区域来评估轨迹密度。在我们的计数条件下,使用0.2 ml的Tegcheted来源的Teg可以实现均匀分布。此外,分析了使用溶液介质(也称为“湿法”)和常规“干法”的轨道套准技术,并将其与提出的方法进行了比较。通过分析两个不同实验室的两个低水平核废料样品中的总α活性,测试了该研究方法的可重复性。 =(c)2005 Elsevier Ltd.保留所有权利。

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