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土壤和沉积物的环境放射性:尼罗河谷的埃及段

Environmental radioactivity of soils and sediments: Egyptian sector of the Nile valley.

作者信息

Badawy Wael M, Duliu Octavian G, Frontasyeva Marina V, El Samman Hussein, Faanhof Arnaud

机构信息

a Radiation Protection & Civil Defense Department , Egyptian Atomic Energy Authority (EAEA), Nuclear Research Center , Abu Zaabal , Egypt.

b Frank Laboratory of Neutron Physics , Joint Institute for Nuclear Research , Dubna , Russian Federation.

出版信息

Isotopes Environ Health Stud. 2018 Oct;54(5):535-547. doi: 10.1080/10256016.2018.1482292. Epub 2018 Jun 6.

Abstract

The activity concentrations of natural K, Th, and U in 89 soil and 84 sediment samples collected over the entire Egyptian Nile River basin including the Nile delta are reported based on the results of epithermal neutron activation analysis. The average activity concentrations of K, Th, and U equal to 15.3 ± 6.6, 15.6 ± 11.1 and 220 ± 31 Bq/kg, respectively, are significantly lower than those reported for the Upper Continental Crust, World Average Sediments as well as World Average Soils, suggesting the presence of a considerable portion of mafic material, most probably originating from the Ethiopian High Plateau. Their average activity concentrations are statistically the same in soil and sediments, indicating that the Nile sediments and soil material are of the same origin. The main goal of this study was not only to estimate the radiological hazards but also to show the influence of sedimentary material transportable by the Blue Nile from the Ethiopian High Plateau. The different hazard indices like the radium equivalent, gamma index, external hazard as well as the internal hazard show a low radiological exposure either on direct contact or if local mud bricks are used in the construction of dwellings.

摘要

基于超热中子活化分析结果,报告了在包括尼罗河三角洲在内的整个埃及尼罗河流域采集的89个土壤样本和84个沉积物样本中天然钾、钍和铀的活度浓度。钾、钍和铀的平均活度浓度分别为15.3±6.6、15.6±11.1和220±31 Bq/kg,显著低于上地壳、世界平均沉积物以及世界平均土壤的报告值,这表明存在相当一部分镁铁质物质,很可能源自埃塞俄比亚高原。它们在土壤和沉积物中的平均活度浓度在统计上是相同的,这表明尼罗河沉积物和土壤物质来源相同。本研究的主要目的不仅是评估放射性危害,还在于展示青尼罗河从埃塞俄比亚高原携带的沉积物质的影响。不同的危害指数,如镭当量、伽马指数、外部危害以及内部危害,表明无论是直接接触还是在住宅建设中使用当地泥砖,辐射暴露都较低。

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