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用于水中镭测定的液体闪烁计数器切伦科夫辐射探测及其与其他常用方法的比较。

Cherenkov Radiation Detection on a LS Counter for Ra Determination in Water and Its Comparison with Other Common Methods.

作者信息

Stojković Ivana, Todorović Nataša, Nikolov Jovana, Radulović Branka, Guida Michele

机构信息

Faculty of Technical Sciences, University of Novi Sad, Trg Dositeja Obradovića 6, 21000 Novi Sad, Serbia.

Department of Physics, Faculty of Sciences, University of Novi Sad, Trg Dositeja Obradovića 3, 21000 Novi Sad, Serbia.

出版信息

Materials (Basel). 2021 Nov 8;14(21):6719. doi: 10.3390/ma14216719.

Abstract

Reliable determination of Ra content in drinking water, surface water and groundwater is required for radiological health-risk assessment of populations and radiation-dose calculations after ingestion and inhalation. This study aimed to determine Ra presence in the untreated water samples on a liquid scintillation counter via Cherenkov radiation detection. Cherenkov counting is a faster, simpler, less expensive technique than other commonly used methods for Ra determination. Step-by-step optimization of this technique on the Quantulus detector is presented in this paper. Improvement of detection limit/efficiency in the presence of sodium salicylate was investigated in this study. The main parameters of the method obtained were detection efficiency 15.87 (24)% and detection limit 0.415 Bq/L achieved for 1000 min of counting in 20 mL of sample volume. When 1 g of sodium salicylate was added, efficiency increased to 38.1 (5)%, with a reduction in the detection limit to 0.248 Bq/L for 500 min of counting. A satisfactory precision level of Cherenkov counting was obtained, the results deviating between 5% and 20% from reference values. The precision and accuracy of the Cherenkov counting technique were compared to liquid scintillation counting (EPA Method 913.0 for radon determination) and gamma spectrometry (the direct method for the untreated water samples on HPGe spectrometer). An overview of the advantages/disadvantages of each technique is elaborated in this paper.

摘要

为了对人群进行放射健康风险评估以及计算摄入和吸入后的辐射剂量,需要可靠地测定饮用水、地表水和地下水中的镭含量。本研究旨在通过切伦科夫辐射检测,利用液体闪烁计数器测定未处理水样中的镭含量。与其他常用的镭测定方法相比,切伦科夫计数是一种更快、更简单、成本更低的技术。本文介绍了在Quantulus探测器上对该技术进行的逐步优化。本研究还考察了在水杨酸钠存在下检测限/效率的提高情况。该方法获得的主要参数为:在20 mL样品体积中计数1000分钟时,检测效率为15.87(24)%,检测限为0.415 Bq/L。当加入1 g水杨酸钠时,效率提高到38.1(5)%,在计数500分钟时检测限降低到0.248 Bq/L。切伦科夫计数获得了令人满意的精密度水平,结果与参考值的偏差在5%至20%之间。将切伦科夫计数技术的精密度和准确度与液体闪烁计数(EPA方法913.0用于氡测定)和伽马能谱法(直接法用于HPGe光谱仪上的未处理水样)进行了比较。本文阐述了每种技术的优缺点概述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f193/8587417/ef65421aa07d/materials-14-06719-g001.jpg

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