A Comparative Analysis of Radioactive Material Concentrations in Natural Sources Linked to Mining in Niger using two Measurement Methods

Yacouba Souley Abdoullaziz, Aboubacar Almoustapha, Mohamed H. Hassan
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Abstract

In the present work, we report the results of radioactivity measurements carried out in soils from the COMINAK and SOMAIR mining areas, using normal mode gamma-ray spectroscopy (NMGS) and thermal neutron activation analysis (TNAA). Radio activities were determined for two series radionuclides (U-238 and Th-232) and one non-series radionuclide (K-40) from measured gamma-ray spectra. The activity concentrations of U-238 and Th-232 were respectively determined from the average nuclide concentration [Pb-214 (295.2keV ; 19.20%), Pb-214(351.9keV ; 37.10%), Bi-214 (609.3keV ; 46.90%), Bi-214 (1120.2keV; 15.04%) and Bi-214 (1764.49 keV; 15.90%)] and [Pb-212 (238.6keV; 43.6%), Pb-212 (300.09 keV; 3.18%), and Ac-228 (911.2keV; 25.8%), Ac-228 (968.9keV; 15.8%), Ac-228 (338.32 keV; 11.27%)]. The activity concentrations of K-40 are determined directly by measuring gamma-ray transitions at 1460.8keV (100%) using a high-resolution pure germanium detector with good efficiency from the Egyptian Atomic Energy Authority. We find that the result found in NMGS technique and TNAA technique for COMINAK soil sample for U-238 and Th-232 are 2.32mg/Kg, 2.36mg/Kg and 11.67mg/Kg, 11.72mg/Kg respectively the results are getting closer. In SOMAIR soil sample the result found for U-238 is getting closer 1.35mg/Kg and 1.34mg/Kg respectively for NMGS and TNAA and also for Th-232 the result is close 7.2mg/Kg and 7.87mg/Kg respectively for NMGS and TNAA. The results obtained confirm that one of the samples (COMINAK soil) is more radioactive than the SOMAIR soil samples, and the results are similar for both NMGS and TNAA techniques, with the exception of thorium in the SOMAIR soil sample. This study will help to assess the environmental impact around the mining areas.
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使用两种测量方法比较分析尼日尔采矿相关天然来源中的放射性物质浓度
在本研究中,我们报告了利用正常模式伽马射线光谱(NMGS)和热中子活化分析 (TNAA)对 COMINAK 和 SOMAIR 矿区土壤进行放射性测量的结果。通过测量伽马射线光谱,确定了两种系列放射性核素(铀 238 和钍 232)和一种非系列放射性核素(K-40)的放射性活度。铀-238 和钍-232 的放射性活度浓度分别根据核素平均浓度[Pb-214(295.2keV;19.20%)、Pb-214(351.9keV;37.10%)、Bi-214(609.3keV;46.90%)、Bi-214(609.3keV;46.90%)、Bi-214(609.3keV;46.90%)]确定。90%)、Bi-214(1120.2keV;15.04%)和 Bi-214(1764.49keV;15.90%)]以及[Pb-212(238.6keV;43.6%)、Pb-212(300.09keV;3.18%)和 Ac-228(911.2keV;25.8%)、Ac-228(968.9keV;15.8%)、Ac-228(338.32keV;11.27%)]。通过使用埃及原子能管理局提供的高分辨率、高效率的纯锗探测器测量 1460.8keV(100%)的伽马射线跃迁,直接测定了 K-40 的放射性浓度。我们发现,用 NMGS 技术和 TNAA 技术测定的 COMINAK 土壤样本中铀 238 和钍 232 的结果分别为 2.32 毫克/千克、2.36 毫克/千克和 11.67 毫克/千克、11.72 毫克/千克,结果越来越接近。在 SOMAIR 土壤样本中,NMGS 和 TNAA 的铀-238 结果分别为 1.35mg/Kg 和 1.34mg/Kg,Th-232 结果分别为 7.2mg/Kg 和 7.87mg/Kg。所得结果证实,其中一个样本(COMINAK 土壤)的放射性高于 SOMAIR 土壤样本,而 NMGS 和 TNAA 技术的结果相似,但 SOMAIR 土壤样本中的钍除外。这项研究将有助于评估采矿区周围的环境影响。
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