首页> 外文期刊>Iranian journal of science and technology >Radon Concentration in Groundwater and Soil Gas Radon in Agbabu Bituminous Deposit Area: Mapping, GR Potential and Health Risks Assessments
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Radon Concentration in Groundwater and Soil Gas Radon in Agbabu Bituminous Deposit Area: Mapping, GR Potential and Health Risks Assessments

机译:Agbabu沥青沉积区地下水和土壤气体氡中的氡浓度:测绘,GR潜在和健康风险评估

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摘要

Agbabu community in Ondo State Southwestern, Nigeria, is characterized by the high volume of bitumen deposit. The level of radon concentrations in soil gas and groundwater was assessed using RAD 7. Soil gas radon concentration ranged from 0.2 +/- 0.1 kBqm(-3) to 92.7 +/- 2.4 kBqm(-3) with an average of 20.6 +/- 0.8 kBqm(-3). The radon concentration in shallow wells water samples ranged from 9.8 +/- 3.6 Bql(-1) to 64.5 +/- 10.6 Bql(-1) with a mean value of 30.2 +/- 6.7 Bql(-1). The total annual effective dose due to ingestion and inhalation of radon ranged from 28.1 to 185.1 mu Svy(-1), 27.3 to 179.4 mu Svy(-1) and 26.8 to 176.1 mu Svy(-1) with mean values of 86.6, 83.9 and 82.4 mu Svy(-1) for infants, children and adults, respectively. The total annual effective dose obtained in 33% of the shallow wells water samples exceeded 100 mu Svy(-1) safe limits recommended by the World Health Organization (WHO). Radon concentration ranging from low to high was revealed in mapping, 3D surface mapping and geogenic radon potential. The groundwater in shallow wells that exceeded the recommended limit could pose significant radiological burdens such as occurrences of cancer among the populace. Therefore, water samples from those wells should be aerated before consumption.
机译:Agbabu社区在尼日利亚尼日利亚的伊斯达尔州西南部,以大量的沥青矿床为特征。使用RAD 7评估土壤气体和地下水中的氡浓度水平。土壤气体氡浓度为0.2 +/- 0.1kbqm(-3)至92.7 +/- 2.4kbqm(-3),平均为20.6 + / - 0.8 kbqm(-3)。浅孔水中的氡浓度水样为9.8 +/- 3.6 bql(-1)至64.5 +/- 10.6 bql(-1),平均值为30.2 +/- 6.7 bql(-1)。由于摄取和吸入氡的总有效剂量范围为28.1至185.1μssvy(-1),27.3至179.4 mu svy(-1)和26.8至176.1亩svy(-1),平均值为86.6,83.9对于婴儿,儿童和成年人,82.4亩Svy(-1)。 33%的浅层井水样中获得的年度有效剂量超过100亩SVY(-1)世界卫生组织(WHO)的安全限制。在映射,3D表面映射和造环氡电位中揭示了从低到高电平的氡浓度。超过推荐极限的浅层井的地下水可能会造成显着的放射性负担,如民众中的癌症发生。因此,在消耗之前,来自那些井的水样应该被曝光。

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