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首页> 外文期刊>Journal of African earth sciences >Assessment and mapping of the high background radiation anomaly associated with laterite utilization in the south coastal region of Kenya
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Assessment and mapping of the high background radiation anomaly associated with laterite utilization in the south coastal region of Kenya

机译:肯尼亚南部沿海地区与红土利用相关的高背景辐射异常的评估和绘图

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摘要

Laterite is commonly used in Kenya and other tropical countries as an aggregate material for road paving. However, the use and relocation of laterite and other geological materials from high background radiation areas (HBRA) may increase exposure to ionizing radiation in areas that were originally at background radiation levels. We present the results of an in-situ radiometric survey conducted at sites associated with laterite utilization around the Mrima Hill HBRA and adjoining environs along a section of the main road in south coastal region of Kenya. The goal of this study was to determine the levels of primordial radionuclides, as well as to assess and map the associated radiation exposure due to the modified radiation field resulting from the use of laterite in the region. It was found that air absorbed gamma dose-rates on parts of the road and side road intersections (median values are 326 +/- 52 and 987 +/- 138 nGy h(-1), respectively) range 4-14 times higher than the adjoining areas. This anomaly was attributed to elevated levels of U-238 and Th-232 (activity concentrations range 202-1452 Bq kg(-1) and 315-1579 Bq kg(-1), respectively) measured adjacent to the laterite roadbeds. In addition, results from the energy dispersive X-ray fluorescence analysis of lateritic soils showed that Th correlates positively with monazite constituent elements namely P, La, Ce and Nd suggesting that the laterite used for road paving in parts of the region was sourced from Mrima Hill.
机译:红土在肯尼亚和其他热带国家通常用作铺路的骨料。但是,高背景辐射区(HBRA)中红土和其他地质材料的使用和迁移可能会增加本来处于本底辐射水平的区域对电离辐射的暴露。我们介绍了在肯尼亚南部沿海地区某条主要道路沿线的Mrima Hill HBRA周围及邻近环境中与红土利用相关的地点进行的原位辐射调查结果。这项研究的目的是确定原始放射性核素的水平,以及评估和绘制因该地区使用红土而导致的辐射场变化而引起的相关辐射暴露。研究发现,部分道路和小路交叉口的空气吸收伽马剂量率(中值分别为326 +/- 52和987 +/- 138 nGy h(-1))比高4-14倍。相邻区域。将此异常归因于邻近红土路基测量的U-238和Th-232水平升高(活动浓度范围分别为202-1452 Bq kg(-1)和315-1579 Bq kg(-1))。此外,红土土壤的能量色散X射线荧光分析结果表明,Th与独居石构成元素P,La,Ce和Nd正相关,这表明该地区部分地区用于铺路的红土来源于Mrima。爬坡道。

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