测量加纳Volta地区Ketu南区高商业区道路沿线土壤尘埃样本中的天然放射性

M. Addo, J. Lomotey, Bernard Osei, Kwame Appiah
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引用次数: 2

摘要

人们越来越意识到并关注加纳主要商业区的小商贩和通勤者在道路沿线土壤中产生的灰尘的放射性影响。这些商业区的土壤可能受到道路灰尘的污染,从而改变其放射性特性。这是因为道路灰尘普遍暴露于工业和城市活动等环境因素以及车辆排放的废气。在本研究中,沿着加纳Volta地区Ketu南区的六条道路收集了52个表层土壤样本。研究区是商业活动频繁的地区之一,因此交通密度高。采用高纯锗(HPGe)伽马能谱法测定样品中238u、232Th和40k的比活度浓度。对结果进行了评估,以评估该地区路边土壤的放射性影响。238u在样品中的活性浓度范围为74.62 ~ 156.3 Bq/kg,平均为112.4 Bq/kg。232th的活性浓度范围为6.5 ~ 29.0 Bq/kg,平均为14.6 Bq/kg; 40k的活性浓度范围为83.76 ~ 224.27 Bq/kg,平均为141.02 Bq/kg。结果被用来估计研究土壤的放射性参数。其中的镭当量活度(Raeq)、吸收剂量率(D)和年有效剂量(E)水平低于联合国科委会(2000年)或ICRP(1991年)等国际机构建议的或安全限度。这些结果表明,研究地区的土壤具有正常的辐射水平,因此在放射学上是安全的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement of natural radioactivity in soil dust samples along roadways in high commercial areas of the Ketu South district of the Volta Region, Ghana
There are increasing awareness and concern about the radiological impact of dust from soils along the roadways on petty traders and commuters in major commercial areas of Ghana. Soils in such commercial areas can be contaminated by road dust that could alter their radiological characteristics. This is because of the general exposure of road dust to environmental elements such as industrial and urban activities and also exhaust fumes from the vehicles. In the present study, 52 surface soil samples were collected along six roadways in the Ketu South District of the Volta Region, Ghana. The study area is one of the high commercial activities and consequently high traffic density. The measures of the specific activity concentration of238U,232Th, and40K in the samples were taken using high-purity germanium (HPGe) gamma-ray spectrometry. The results were evaluated to assess the radiological impact due to roadside soil in the area. The activity concentration in the samples ranged from 74.62 to 156.3 Bq/kg for238U, with an average of 112.4 Bq/kg. The activity concentrations of232Th ranged from 6.5 to 29.0 Bq/kg, with an average of 14.6 Bq/kg and that of40K ranged from 83.76 to 224.27 Bq/kg with an average of 141.02 Bq/kg. The results were used to estimate the radiological parameters of the study soils. The levels of radium equivalent activity (Raeq), absorbed dose rate (D), and annual effective dose (E) in them were lower than the recommended or safe limits proposed by international bodies such as UNSCEAR (2000) or ICRP (1991). These findings indicated that soils in the studied area had the normal levels of radiation and were therefore radiologically safe.
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