尼日利亚高原州乔斯南和巴尔金-拉迪废弃矿址土壤中天然放射性核素的浓度和分布评估

Lubis S., Shibdawa M. A., Adamu H, Dahiru A. A., Bakji G, Ngap J.S
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摘要

巴金拉迪和高原州乔斯南地方政府区位于尼日利亚北部中部,地形崎岖低洼。该地区是锡和铌铁矿的主要成矿中心,是较年轻花岗岩的集中地。这项工作旨在评估废弃锡矿土壤中放射性核素的浓度和分布情况以及土壤的物理化学特性。样本于七月从采矿活动猖獗的巴金拉迪和乔斯南部的五个不同地点采集。使用伽马射线光谱仪对样本进行了分析。结果显示,40K 的浓度范围为 116.76 ± 0.21 至 250.15 ± 0.42 Bq/kg,226Ra 的浓度范围为 24.37 ± 0.31 至 90.45 ± 0.86 Bq/kg,232Th 的浓度范围为 15.74 ± 0.71 至 88.43 ± 0.14 Bq/kg。土壤理化性质的分析结果分别为 pH 值(3.12 至 6.81%)、有机碳(0.01 至 1.62%)、有机质(0.22 至 3.01%)、阳离子交换容量(1.01 至 4.21Cmol/kg)、粘土(9.72 至 40.82%)、粉土(8.32 至 40.32%)和砂土(32.42 至 75.38%)。所有采样点的 40K 分析结果均低于每公斤 412Bq 的建议安全限值,而 226Ra 和 232Th 的分析结果则大多高于每公斤 33Bq 和 45Bq 的建议安全限值。土壤中天然放射性核素含量过高,会对附近居民的健康造成潜在威胁。各采样点的土壤理化性质各不相同。大多数采样点都受到放射性核素的污染,从已进行的研究中可以注意到放射性核素从前采矿点迁移到环境的其他部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of Concentrations and Distributions of Natural Radionuclides in Soils of Abandoned Mine Sites of Jos South and Barkin Ladi in Plateau State Nigeria
Barkin Ladi and Jos South Local Government Area of Plateau State is situated in the central part of Northern Nigeria, on a rugged terrain of lowlands. It is the principal centre of tin and columbite mineralization, which forms the focal area of younger granites. The work was aimed at assessing the concentration and distribution of radionuclides in soils of abandoned tin mines and the soil’s physicochemical properties. The samples were collected in July, from five different locations in both Barkin Ladi and Jos South where mining activities were predominant. The samples were analyzed using a gamma-ray spectrometer. The result obtained reveals a range of the concentrations of 40K as 116.76 ± 0.21 to 250.15 ±0.,42 Bq/kg, 226Ra from 24.37 ± 0.31 to 90.45 ± 0.86 Bq/kg, and 232Th from 15.74 ± 0.71 to 88.43 ± 0.14 Bq/kg. The result of the physicochemical properties of the soil analyzed ranges from pH (3.12 to 6.81); organic carbon (0.01 to 1.62%); organic matter (0.22 to 3.01 %), cation exchange capacity (1.01 to 4,21Cmol/kg); clay (9.72 to 40.82 %); silt (8.32 to 40.32% and sand (32.42 to 75.38%) respectively. All the 40K results analyzed in all the sampling sites were lower than the recommended limits of 412Bq/kg, whereas most of the results of 226Ra and 232Th were above the 33Bq/kg and 45Bq/kg recommended safe limits. Exposure to elevated levels of naturally occurring radionuclides in soil can pose potential health risks to nearby populations. The physicochemical properties of the soil varied across the sampling sites. Most of the sampling sites are polluted with radionuclides and migrations of the radionuclides from the ex-mining sites to other parts of the environment were noticed from the studies conducted.
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