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新的水研究所电解浓缩系统用于氚测定及降水氚活度的初步结果。

New electrolytic enrichment system for tritium determination in water research institute in Bratislava and IT'S first results of tritium activity in precipitation.

机构信息

Water Research Institute, Nabr. Arm. Gen. L. Svobodu 5, Bratislava, 812 49, Slovakia.

Water Research Institute, Nabr. Arm. Gen. L. Svobodu 5, Bratislava, 812 49, Slovakia.

出版信息

J Environ Radioact. 2020 May;216:106177. doi: 10.1016/j.jenvrad.2020.106177. Epub 2020 Feb 12.

Abstract

The method of tritium activity measurements by electrolytic enrichment in combination with liquid scintillation counting is well known for many years. In the Water Research Institute in Bratislava was this system employed since the 60-ties of the 20th century. In 2018 the laboratory of radiochemistry of Water Research Institute obtained a new electrolytic enrichment system with higher enrichment factor (varying from 9 to 22, depending on the total ampere-hours used). The enrichment factor of the previous system was about 6. Complementary to the new system, also the new LCS counter Quantulus GCT 6220 was added. This spectrometer has active background suppression function (Guard Compensation Technology - GCT) and for the tritium measurement the background counts decreased from cca. 9 cpm (for Tricarb 2900 TR) to approximately 1 cpm. To demonstrate the capabilities of this system, we present results of the tritium concentration in precipitations during the period from May 2016 to May 2019. The seasonal variations of tritium activities in precipitation are observed, with maximum values in spring season and minimum in winter. Additionally, selected tritium activities from the extensive monitoring of river waters in Slovakia are presented.

摘要

多年来,通过电解浓缩结合液体闪烁计数来测量氚活度的方法广为人知。在布拉迪斯拉发的水研究所,自 20 世纪 60 年代以来一直采用这种系统。2018 年,水研究所的放射化学实验室获得了一种新的电解浓缩系统,其浓缩系数更高(取决于使用的总安培小时数,范围为 9 到 22)。以前系统的浓缩系数约为 6。除了新系统,还增加了新的 LCS 计数器 Quantulus GCT 6220。该光谱仪具有主动背景抑制功能(Guard Compensation Technology-GCT),对于氚测量,背景计数从约 9 cpm(对于 Tricarb 2900 TR)减少到约 1 cpm。为了展示该系统的能力,我们展示了 2016 年 5 月至 2019 年 5 月期间降水氚浓度的结果。观察到降水中氚活度的季节性变化,春季最大值,冬季最小值。此外,还展示了对斯洛伐克河流广泛监测的选定氚活度。

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