尼日利亚输电公司周边地下水放射性核素水平环境影响评价调查

A. Adegunwa, S. Awojide, O. Ore
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引用次数: 2

摘要

为突出和确定可能的放射性核素污染,对尼日利亚奥索博输电公司周边地区的地下水中40K、238U和232Th的活度浓度进行了测量。采用高分辨率伽马能谱法(HPGe探测器)测定这些放射性核素的活度浓度,所得结果用于计算该地区居民的人体辐射风险。地下水样品中40K的活度浓度范围为53.48±2.90 ~ 407.58±20.94 Bq/L。地下水中238U的活度浓度范围为BDL ~ 21.86±3.05 Bq/L。地下水中232Th的活度浓度范围为2.18±0.14 ~ 11.76±0.68 Bq/L。在所调查的三种放射性核素中,40K被观察到具有最高的平均活性浓度。放射学参数表明,吸收剂量率平均值为15.25 nGy/hr,年有效剂量为0.13 mSv/yr,内危害指数为0.10 Bq/kg,外危害指数为0.08 Bq/L,年性腺剂量当量为110.02µsvy-1,代表性γ指数为0.24,镭当量为31.11。这些结果表明,地下水并不构成固有的辐射危害,因为它们的值比辐射科委会允许的水平相对较低。因此,由辐射引起的任何健康影响的发生都很低。因此,这些测量值代表了研究地区地下水中这些放射性核素的基线值,应鼓励对这些地下水进行进一步监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Radionuclide Levels in Groundwater Around Transmission Company of Nigeria for Environmental Impact Assessment
The activity concentrations of 40K, 238U and 232Th in groundwaters taken from areas surrounding Transmission Company of Nigeria, Osogbo, Nigeria were measured to highlight and ascertain possible radionuclide pollution. High-resolution gamma spectrometry (HPGe detector) was used to determine the activity concentration of these radionuclides and the results obtained were used to calculate human radiological risk by the inhabitants in the area. The activity concentrations of 40K in all the groundwater samples range from 53.48 ± 2.90 to 407.58 ± 20.94 Bq/L. The activity concentrations of 238U in the groundwaters range from BDL to 21.86 ± 3.05 Bq/L. The activity concentrations of the 232Th in the groundwaters range from 2.18 ± 0.14 to 11.76 ± 0.68 Bq/L. Of the three investigated radionuclides, 40K was observed to have the highest mean activity concentration. The radiological parameters indicated mean values of 15.25 nGy/hr as the absorbed dose rate, 0.13 mSv/yr as the annual effective dose, 0.10 Bq/kg as the internal hazard index, 0.08 Bq/L as the external hazard index, 110.02 µsvy-1 as the annual gonadal dose equivalent, 0.24 as the representative gamma index and 31.11 as the radium equivalent. These suggested that the groundwaters do not pose intrinsic radiological hazards as a result of their relatively lower values than the UNSCEAR permissible levels. As a result of this, the occurrence of any heath effect due to radiation is low. These measurements therefore represent baseline values of these radionuclides in the ground waters of the studying area and further monitoring of these groundwaters should be encouraged.
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