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Analysis of interferences from full energy peaks in gamma spectrometry of NORM and TENORM samples

机译:分析NORM和TENORM样品的伽马能谱中全能量峰的干扰

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A considerable number of primordial radioisotopes are present in almost all the samples extracted from the Earth’s crust, such as oil, rock, soil or other materials. Their concentrations are often determined by gamma spectrometry. Although the relative concentrations of isotopes often fluctuate within a narrow range, it is not always the case. Some natural materials (such as naturally occurring radioactive material) show unusual activity ratio between 238U and 232Th, while technologically processed materials (technologically enhanced naturally occurring radioactive material) might also introduce significant disequilibrium in radioactive chains. Knowing that primordial radioisotopes emit in total more than a thousand gamma and characteristic X-ray photons and that many of them interfere with each other, a question arises whether for some activity ratios commonly used photopeaks become useless for quantitative analysis, due to interferences with other photopeaks. A computer program was developed in order to calculate full energy photon interferences for any chosen photopeak. The calculations are based on the inputs in the form of isotope activities and detector calibration equations and its characteristics are presented in this paper. [Projekat Ministarstva nauke Republike Srbije, br. III43009]
机译:几乎所有从地壳中提取的样品(例如石油,岩石,土壤或其他材料)中都存在大量的原始放射性同位素。它们的浓度通常通过伽马能谱法测定。尽管同位素的相对浓度通常在狭窄范围内波动,但并非总是如此。一些天然材料(例如天然存在的放射性物质)在238U和232Th之间显示出异常的活度比,而经过技术处理的材料(在技术上增强了天然存在的放射性物质)也可能在放射性链中引入显着的不平衡。知道原始放射性同位素总共发出一千多个伽玛射线和特征性X射线光子,并且它们中的许多相互干扰,因此会产生一个问题:对于某些活度比,常用的光电峰是否由于与其他同位素的干扰而变得无法用于定量分析峰值。开发了一个计算机程序,以便为任何选定的光峰计算全能光子干扰。该计算基于同位素活度形式的输入和检测器校准方程式,并介绍了其特性。 [Projekat Ministarstva nauke Republike Srbije,br。 III43009]

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