用NaI(Tl)γ能谱仪测定和计算TENORM暴露的放射性核素辐射生物剂量

Mohamed Mitwalli, Fatma Qabeeli, A. El-Khatib, M. Abbas, G. Saleh
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引用次数: 1

摘要

本研究旨在确定天然放射性水平,并评估对埃及中东部沙漠El Missikat年轻花岗岩的放射性影响。关于与天然存在和技术上增强的放射性物质丰度有关的放射性核素的分布模式,从El Missikat地区的预定地点收集了34个调查样本。使用NaI(Tl)伽马射线光谱仪进行放射分析测量,然后使用PCA3 Oxford软件分析记录的光谱。伽马射线的效率转移应用于EFFTRAN软件中,放射性核素库的设计涉及属于天然铀-238和钍-232同位素以及钾-40的放射性核素。辐射剂量是利用EPA、ICRP和UNSCEAR推荐的活性浓度和转换系数计算的。U-238、Th-232和K-40的活性浓度的平均值分别为(9986.21、5586.19和64.72 Bq/kg)。U-238、Th-232和K-40的伽马辐射引起的计算有效剂量的平均值分别为(6.79E-19、2.20E-18和4.30E-15 Sv/y)。与类似环境的全球参考EPA、IAEA、ICRP和UNSCEAR相比,大多数结果值都明显处于较高水平。为了提供关于辐射防护和器官剂量的人体安全积分的结果,计算了癌症的超额寿命风险和危害指数,为专业人员应用完美的辐射防护方法。
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Radionuclides Determination and Computing Radiobiological Dose for TENORM Exposure Using NaI(Tl) Gamma-ray Spectrometer
The present study is carried out to determine the natural radioactivity level and assessment of the radiological impact on El-Missikat younger granites of the Central Eastern Desert in Egypt. Regarding the distribution pattern of radionuclides associated with the abundance of naturally occurring and technically enhanced radioactive materials, 34 investigated samples were collected from predetermined locations in the El-Missikat area. The radioanalytical measurements were performed by using NaI(Tl) gamma-ray spectrometer, then PCA3 Oxford software was used to analyze the recorded spectra. The efficiency transfer of Gamma-ray was applied within EFFTRAN software, and the library of radionuclides has been designed to involve radionuclides belonging to the natural uranium-238 and thorium-232 isotopes as well potassium-40. The radiation doses were calculated utilizing activity concentrations and the conversion coefficients recommended by EPA, ICRP, and UNSCEAR. The average values of activity concentrations for U-238, Th-232, and K-40 are (9986.21, 5586.19, and 64.72 Bq/kg) respectively. The average values of calculated effective dose caused by gamma radiation of U-238, Th-232, and K-40 are (6.79E-19, 2.20E-18, and 4.30E-15 Sv/y) respectively. Most of the resulting values are significantly of a high level compared to the worldwide reference EPA, IAEA, ICRP, and UNSCEAR for similar environments. To furnish results regarding radiation protection and human safety integral of organ doses, the excess lifetime cancer risk and hazards indices were calculated to apply a perfect radiation protection methodology for the professionals.
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