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Determination of Primordial Radionuclides in Natural Samples Using HPGe Gamma-Ray Spectrometry

机译:使用HPGEγ射线光谱法测定天然样品中的原始放射性核素

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Distributions of primordial radionuclides in soil and vegetables were investigated using high-purity germanium gamma-ray spectrometry. Gamma-ray spectrometry is one of the most accepted and widely used techniques for the detection and analysis of radioactive materials for a wide range of activity. Important properties of the employed gamma-ray detector were also determined to ensure the accuracy of the radiometric analysis. The studied samples were kept in airtight condition at least for 6 weeks before gamma counting to attain the radioactive equilibrium between daughters and parents of ~(226)Ra (~(238)U) and ~(232)Th decay series. The average specific activities for uranium in soil and vegetable samples were obtained as 21±4 and 2.4±0.4, respectively. Respective values for Thorium and Potassium levels were obtained as 21±3, 1.9±0.5 and 290±20, 80.3±54.9 in soil and vegetable samples. The reported data can be considered as base values for distribution of natural radionuclides in soil and vegetable samples in the studied region, and will be used as reference information to assess any radiological contamination due to soil and vegetables in future. The response of the studied the detector was found suitable for radioactivity analysis of natural samples having a wide range of activity.
机译:采用高纯度锗γ射线光谱研究了土壤和蔬菜原始放射性核素的分布。 γ射线光谱是用于检测和分析广泛活动的放射性材料的最受欢迎和广泛使用的技术之一。还确定所用γ射线探测器的重要特性以确保辐射分析的准确性。在伽马计数之前至少6周将研究的样品保持在气密状态,以获得〜(226)Ra(〜(238)U)和〜(232)衰减系列之间的子女和父母之间的放射性均衡。土壤和植物样品中铀的平均特定活性分别为21±4和2.4±0.4。钍和钾水平的各自值为21±3,1.9±0.5和290±20,80.3±54.9,在土壤和植物样品中。报告的数据可以被认为是用于研究区域中土壤和蔬菜样品中的天然放射性核素分布的基本值,并将用作参考信息,以评估未来土壤和蔬菜引起的任何放射污染。研究的响应被发现适用于具有各种活性的天然样品的放射性分析。

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