A tri-nuclide calibration standard for HPGe gamma spectrometry

IF 1.6 3区 化学 Q3 CHEMISTRY, ANALYTICAL
Jia Feng Mak, Doris Mer Lin Ho, Boon Kin Pong
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引用次数: 0

Abstract

High-resolution gamma spectrometry using high-purity germanium (HPGe) crystal provides identification and quantification of radionuclides at high confidence. However, it is critical for these HPGe spectrometry system to be robustly calibrated for energy, detection efficiency and peak-shape. Calibration of the spectrometer generally requires mixed gamma standards that contain as many as eleven radionuclides. Unfortunately, some of these radionuclides are short-lived with relatively short half-lives e.g. 27.7 and 64.8 days for Cr-51 and Sr-85, respectively. The short-lived nuclides limit the effectiveness of such calibration standards to only a few months. In this work, we report the development of a tri-nuclide calibration standard containing relatively long-lived Eu-154, Eu-155 and Sb-125 that allows it to remain effective for at least two years. The key to using the tri-nuclide as a calibration standard for HPGe spectrometry is to remove interferences resulting from coincidence summations.

HPGe能谱法的三核素校准标准品
使用高纯度锗(HPGe)晶体的高分辨率伽马能谱法提供了高置信度的放射性核素鉴定和定量。然而,对这些HPGe光谱系统进行能量、检测效率和峰形的稳健校准是至关重要的。光谱仪的校准通常需要含有多达11种放射性核素的混合伽马标准。不幸的是,其中一些放射性核素的半衰期相对较短,例如Cr-51和Sr-85的半衰期分别为27.7天和64.8天。短寿命核素限制了这种校准标准的有效性只有几个月。在这项工作中,我们报告了一种三核素校准标准的开发,该标准包含相对较长的Eu-154, Eu-155和Sb-125,使其能够保持至少两年的有效性。使用三核素作为HPGe光谱的校准标准的关键是消除由重合求和引起的干扰。
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来源期刊
CiteScore
2.80
自引率
18.80%
发文量
504
审稿时长
2.2 months
期刊介绍: An international periodical publishing original papers, letters, review papers and short communications on nuclear chemistry. The subjects covered include: Nuclear chemistry, Radiochemistry, Radiation chemistry, Radiobiological chemistry, Environmental radiochemistry, Production and control of radioisotopes and labelled compounds, Nuclear power plant chemistry, Nuclear fuel chemistry, Radioanalytical chemistry, Radiation detection and measurement, Nuclear instrumentation and automation, etc.
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