Evaluation of natural radioactivity levels and radiation hazards of Nkalagu limestone deposit, southeastern Nigeria

IF 2.9 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Merrious Oviri Ofomola, Fredrick Oghenebrorie Ugbede, Ochuko Anomohanran
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Abstract

Levels of natural radioactivity due to 40 K, 232Th, and 226Ra in limestone deposits and corresponding surface soil samples from the Nkalagu community of Ebonyi State were investigated. Gamma spectroscopic analysis using a NaI (TI) detector was employed to measure the activity concentrations (ACs) of the natural radionuclides in the collected samples. The average AC of 226Ra, 232Th, and 40 K was found to be 64.62 ± 11.63, 54.27 ± 8.52, and 313.06 ± 25.33 Bq/kg, respectively, in limestone, whereas in the soil, the value was 60.80 ± 11.71, 44.97 ± 10.74, and 185.90 ± 18.20 Bq/kg, respectively. Except for 40 K, the obtained mean ACs of the radionuclides were in excess of the worldwide averages reported by the United Nations Scientific Committee on the Effect of Atomic Radiation (UNSCEAR). The mean value of Raeq, Hex, Hin, Iγ, and AUI was obtained as 166.33 Bq/kg, 0.45, 0.62, 1.18, and 1.28, respectively, in the limestone, and 139.42 Bq/kg, 0.38, 0.54, 0.98, and 1.12, respectively, in the surface soil. The radiation doses in limestone ranged from 120.78–168.89 nGyh−1 and 63.86–88.88 nGyh−1 for indoor and outdoor, respectively, whereas in the soil, the range was 104.47–129.77 nGyh−1 and 54.60–68.02 nGyh−1 for indoor and outdoor, respectively. The total annual effective dose ranged from 0.671 to 0.937 mSvy–1 with an average of 0.800 mSvy–1 in limestone and 0.579 to 0.720 mSvy–1 with an average of 0.667 mSvy–1 in the soil. Values of representative gamma index and activity utilization index, and indoor and outdoor radiation doses in limestone were above the recommended world average of ≤ 1, and 84 nGyh–1 and 59 nGyh–1, respectively, suggesting a restriction in the use of the limestone in construction of houses. The study therefore recommends that the use of limestone in building construction, especially in house interiors, should be discontinued.

Abstract Image

评估尼日利亚东南部 Nkalagu 石灰岩矿床的天然放射性水平和辐射危害。
研究调查了埃邦伊州 Nkalagu 社区石灰石沉积物和相应地表土壤样本中 40K、232Th 和 226Ra 天然放射性水平。使用 NaI (TI) 探测器进行伽马能谱分析,测量了采集样本中天然放射性核素的活度浓度(AC)。结果发现,石灰岩中 226Ra、232Th 和 40 K 的平均放射性活度浓度分别为 64.62 ± 11.63、54.27 ± 8.52 和 313.06 ± 25.33 Bq/kg,而土壤中则分别为 60.80 ± 11.71、44.97 ± 10.74 和 185.90 ± 18.20 Bq/kg。除 40 K 外,所获得的放射性核素 AC 平均值均超过了联合国原子辐射影响问题科学委员会(UNSCEAR)报告的全球平均值。在石灰岩中,Raeq、Hex、Hin、Iγ 和 AUI 的平均值分别为 166.33 Bq/kg、0.45、0.62、1.18 和 1.28;在表层土壤中,Raeq、Hex、Hin、Iγ 和 AUI 的平均值分别为 139.42 Bq/kg、0.38、0.54、0.98 和 1.12。石灰岩中的辐射剂量在室内和室外分别为 120.78-168.89 nGyh-1 和 63.86-88.88 nGyh-1,而土壤中的辐射剂量在室内和室外分别为 104.47-129.77 nGyh-1 和 54.60-68.02 nGyh-1。石灰岩的全年总有效剂量介乎 0.671 至 0.937 毫西维-1,平均为 0.800 毫西维-1;土壤的全年总有效剂量介乎 0.579 至 0.720 毫西维-1,平均为 0.667 毫西维-1。石灰石中的代表性伽马指数和活性利用指数值以及室内和室外辐射剂量均高于建议的世界平均值(≤ 1),分别为 84 nGyh-1 和 59 nGyh-1,这表明在建造房屋时应限制使用石灰石。因此,研究建议停止在建筑施工中使用石灰石,特别是在房屋内部。
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来源期刊
Environmental Monitoring and Assessment
Environmental Monitoring and Assessment 环境科学-环境科学
CiteScore
4.70
自引率
6.70%
发文量
1000
审稿时长
7.3 months
期刊介绍: Environmental Monitoring and Assessment emphasizes technical developments and data arising from environmental monitoring and assessment, the use of scientific principles in the design of monitoring systems at the local, regional and global scales, and the use of monitoring data in assessing the consequences of natural resource management actions and pollution risks to man and the environment.
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