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首页> 外文期刊>Journal of Environmental Radioactivity >Multi-group approximation, scattering and calibration coefficients, uncertainty estimates and detection limits of a NaI(Tl)-based gamma spectrometry set-up for low-level activity analysis
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Multi-group approximation, scattering and calibration coefficients, uncertainty estimates and detection limits of a NaI(Tl)-based gamma spectrometry set-up for low-level activity analysis

机译:用于低水平活动分析的基于NaI(Tl)的伽马光谱仪的多组近似值,散射和校准系数,不确定性估计和检测极限

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This paper describes a quantitative radioactivity analysis method especially suitable for environmental samples with low-level activity. The method, consisting of a multi-group approximation based on total absorption and Compton spectra of gamma rays, is coherently formalized and a computer algorithm thereof designed to analyze low-level activity Nal(Tl) gamma ray spectra of environmental samples. Milk powder from 1988 was used as the example case. Included is a special analysis on the uncertainty estimation. Gamma sensitiveness is defined and numerically evaluated. The results reproduced the calibration data well, attesting to the reliability of the method. The special analysis shows that the uncertainty of the assessed activity is tied to that of the calibration activity data. More than 77% of measured 1461-keV photons of ~(40)K were counted in the range of clearly lower energies. Pile-up of single line photons ~(137)Cs) looks negligible compared to that of a two-line cascade (~(134)Cs). The detection limit varies with radionuclide and spectrum region and is related to the gamma sensitiveness of the detection system. The best detection limit always lies in a spectrum region holding a line of the radionuclide and the highest sensitiveness. The most radioactive milk powder sample showed a activity concentration of 21 ± 1 Bqg ~((-1)for ~(137)Cs, 323 ± 13 Bq g~(-1) for~(40)K and no~(134)Cs.
机译:本文介绍了一种定量放射性分析方法,特别适用于低水平环境样品。该方法由基于总吸收量和伽马射线的康普顿光谱的多组近似组成,并被统一形式化,其计算机算法设计用于分析环境样品的低活性Nal(Tl)伽马射线光谱。以1988年的奶粉为例。包括对不确定性估计的特殊分析。定义了伽玛敏感性并对其进行了数值评估。结果很好地再现了校准数据,证明了该方法的可靠性。特殊分析表明,评估活动的不确定性与校准活动数据的不确定性相关。在明显较低的能量范围内,超过约77%的〜(40)K测量的1461-keV光子被计数。与两线级联(〜(134)Cs)相比,单线光子〜(137)Cs的堆积看起来微不足道。检测限随放射性核素和光谱区域的不同而变化,并且与检测系统的伽马敏感性有关。最佳的检测极限始终位于光谱区域,该区域具有放射性核素的线和最高的灵敏度。放射性最高的奶粉样品的活度浓度为〜(137)Cs为21±1 Bqg〜((-1),~~(40)K为323±13 Bq g〜(-1),no〜(134) Cs。

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