尼日利亚阿达马瓦州矿区放射性危害指数分析

S. D. Yusuf, Soja Reuben Joseph, I. Umar
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摘要

目的:分析尼日利亚阿达马瓦州矿区的放射性危害指数。研究设计:实验研究设计使用伽玛射线光谱与校准良好的碘化钠(NaI)探测器。学习地点和时间:2019年11月至2020年8月,尼日利亚阿达马瓦州和尼日利亚凯菲纳萨拉瓦州立大学物理系以及尼日利亚扎里亚艾哈迈德贝罗大学能源研究与培训中心(CERT)实验室。方法:采用系统采样技术采集4个矿区的15个复合土壤样品,分析其Ra-226、Th-232和K-40的活性浓度,并计算γ吸收剂量率、镭等效活性、外部危害指数、年有效剂量率和过量生命癌症风险。结果:Ra-226 (107.60Bq/kg)、Th-232 (84.89Bq/kg)和K-40 (475.34Bq/kg)的平均活性浓度均高于UNSCEAR推荐的世界平均值35Bq/kg、30Bq/kg和400Bq/kg。平均γ吸收剂量率、放射性当量活度、年有效剂量率、外部危害指数和过量生命癌症风险分别为120.31nGy/h、265.469Bq/kg、0.148mSv/y、0.401和0.369,而UNSCER、NEA-OECD和ICRP的推荐值分别为59nGy/h、370Bq/kg、1mSv/y、0.45和0.29。结论:高活性浓度、高γ吸收剂量和高生命癌风险对当地社区构成重大威胁,特别是在SA、SB和SC 3个矿区附近。因此,尼日利亚负责辐射防护事务的主管部门建议与矿区保持安全距离。为了充分保护东道社区,必须提高公众的普遍认识,使他们了解不适当的辐射照射的可能危险和居住在采矿附近的危险。
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Analysis of Radiological Hazard Indices from Mining Sites in Adamawa State, Nigeria
Aims: To analyse the radiological hazard indices from mining sites in Adamawa State, Nigeria. Study Design: Experimental study design using Gamma ray spectroscopy with a well calibrated Sodium Iodide (NaI) detector. Place and Duration of Study: Adamawa State, Nigeria and Department of Physics, Nasarawa State University Keffi, Nigeria, and Centre for Energy Research and Training (CERT) Laboratory, Ahmadu Bello University Zaria, Nigeria between November 2019 and August 2020. Methodology: Fifteen composite samples of soil from four mining sites collected using the systematic sampling techniques were analysed for activity concentrations of Ra-226, Th-232 and K-40 and Gamma Absorbed Dose Rate, Radium Equivalent Activity, External Hazard Index, Annual Effective Dose Rate and Excessive Life Cancer Risk were calculated. Results: Mean activity concentrations Ra-226 (107.60Bq/kg), Th-232 (84.89Bq/kg), and K-40 (475.34Bq/kg) were all above the world average values 35Bq/kg, 30Bq/kg and 400Bq/kg recommended by UNSCEAR. Mean Gamma Absorbed Dose Rate, Radium Equivalent Activity, Annual Effective Dose Rate, External Hazard Index, and Excessive Life Cancer Risk were 120.31nGy/h, 265.469Bq/kg, 0.148mSv/y, 0.401, and 0.369 respectively, against recommended values 59nGy/h, 370Bq/kg, 1mSv/y, 0.45, and 0.29 according to UNSCER, NEA-OECD and ICRP. Conclusion: High values of Activity Concentrations, Gamma Absorbed Dose, and Excessive Life Cancer Risk poses significant threat to the host community, especially around the 3 mining sites SA, SB and SC. Therefore, safety distance from mining areas is recommended by the competent Authority responsible for radiation protection matters in Nigeria. General awareness to enlighten the public about the possible dangers of undue radiation exposure and the risk of residing close to mining vicinity is required, for adequate protection of the host community.
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