Proposal to correct for the effect of background and density in the determination of gamma emitters using sodium iodide detectors

A. M. Velásquez, Fernando Mosos, Giovanni Vela
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引用次数: 0

Abstract

This study develops a modification to the spectra decomposition method for sodium iodide scintillation equipment, including correcting the natural background counts for the activity concentration calculation. A comparison of the results obtained between two sodium iodide detectors of 2 X 2 in and 3 x 3 in versus a hyper-pure germanium detector of 50 % relative efficiency is performed for soil, sediment, and water samples. It is found that background correction significantly improves activity concentration results in higher energy regions. The concentration values determined by the different spectrometric systems for the samples analyzed do not show significant differences, which supports the results obtained with the proposed calculation method. The uncertainty associated with the measurement and detection limits for the NaI (Tl) detectors is higher than those obtained with the GeHp detector due to the operation of the two technologies and the presence of interferences in the regions of interest. The study carried out in this work establishes an analytical milestone. The methodological model proposed makes it possible to quantify, with reliable results, low concentration levels of NORM materials and even 131I using sodium iodide detectors, among other analytical applications of general interest.
修正背景和密度对碘化钠探测器测定伽马辐射体影响的建议
本文对碘化钠闪烁设备的光谱分解方法进行了改进,包括修正了活度浓度计算中的自然本底计数。比较了2 × 2英寸和3 × 3英寸的两种碘化钠探测器与50%相对效率的超纯锗探测器之间的结果,对土壤、沉积物和水样进行了比较。研究发现,背景校正显著改善了高能量区域的活动浓度结果。不同光谱系统测定的样品的浓度值没有显著差异,这支持了所提出的计算方法得到的结果。与NaI (Tl)探测器的测量和检测限相关的不确定度高于用GeHp探测器获得的不确定度,这是由于两种技术的操作以及感兴趣区域存在干扰。在这项工作中进行的研究建立了一个分析里程碑。所提出的方法模型使使用碘化钠探测器对低浓度的NORM材料甚至131I进行量化并获得可靠的结果成为可能,以及其他普遍感兴趣的分析应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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