尼日利亚巴耶尔萨州Kolo Creek沉积物样品中颗粒大小对放射性核素含量的影响

M. Onwuka, C. Ononugbo, J. Ikirigo
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For grain size of 1.0mm (B) the activity concentration of 226Ra, 232Th and 40K varies from 2.661.30 to 26.64Bq/kg, 2.19 0.95 to 33.47 Bq/kg and 43.38  to 739.21Bq/kg respectively. For grain size of 1.5mm (C) the activity concentration of 226Ra, 232Th and 40K varies from 4.401.09 to 33.93± 3.65 Bq/kg, 2.14±1.72 to 26.15±5.3 Bq/kg and 39.90±3.54 to 471.36±6.12 Bq/kg respectively.   For grain size of 2.0 mm (D) the activity concentration of 226Ra, 232Th and 40K varies from 4.81±1.84 to 40.29±2.50 Bq/kg, 2.19±1.40  to 83.20±3.90 Bq/kg and 39.01 ±4.00 to 497.56±5.87Bq/kg  respectively.  The result obtained shows there was no clear trend in variation of activity concentration with grain sizes. The mean values obtained are below the world average of 35, 30 and 400 Bq/kg for 226 Ra, 232Th and 40K for grain sizes of 0.5, 1.0, 1.5 and 2.0 mm respectively in all the communities except samples from Kolo that recorded 471.36±6.12 to 795.99±6.44 Bq/kg in all the grain sizes. 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引用次数: 0

摘要

利用伽马能谱法研究了巴耶尔萨州Kolo creek土壤和沉积物样品中颗粒大小对放射性核素浓度的影响。在漏油地点附近收集了8份沉积物样本。所有样品分为A (0.5mm)、B (1mm)、C (1.5mm)和D (2mm) 4种不同粒度,共32种沉积物。测定了0.5 mm、1.0mm、1.5mm和2mm粒径泥沙样品中的活度浓度。在粒径0.5mm(A)的沉积物样品中,226Ra、232Th和40K的活度浓度分别为2.24 ~ 20.032.43Bq/kg、3.21 ~ 5.591.32 Bq/kg和24.46 ~ 4.06 ~ 795.99 6.20 Bq/kg。当晶粒尺寸为1.0mm (B)时,226Ra、232Th和40K的活性浓度分别为2.661.30 ~ 26.64Bq/kg、2.19 0.95 ~ 33.47 Bq/kg和43.38 ~ 739.21Bq/kg。晶粒尺寸为1.5mm (C)时,226Ra、232Th和40K的活性浓度分别为4.401.09 ~ 33.93±3.65 Bq/kg、2.14±1.72 ~ 26.15±5.3 Bq/kg和39.90±3.54 ~ 471.36±6.12 Bq/kg。粒径为2.0 mm (D)时,226Ra、232Th和40K的活性浓度分别为4.81±1.84 ~ 40.29±2.50 Bq/kg、2.19±1.40 ~ 83.20±3.90 Bq/kg和39.01±4.00 ~ 497.56±5.87Bq/kg。结果表明,活性浓度随粒径的变化趋势不明显。226 Ra、232Th和40K在0.5、1.0、1.5和2.0 mm粒级上的平均值均低于世界平均值35、30和400 Bq/kg,但Kolo样品在所有粒级上的平均值为471.36±6.12 ~ 795.99±6.44 Bq/kg。对吸收剂量率、年有效剂量当量、年性腺剂量当量、年效用指数、放射性水平指数、危害指数和超额寿命癌症风险等放射风险参数进行了估计,结果均在世界平均水平之内。从这项研究中,给定粒度的沉积物如果用于农业和建筑建设,将不会造成放射性健康风险。
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Effect of Grain Size on Radionuclide Content in Sediment Samples from Kolo Creek, Bayelsa State, Nigeria
The effect of grain sizes on radionuclide concentration in soil and sediment samples from Kolo creek, Bayelsa State was investigated using gamma spectroscopy. Eight (8) samples of sediment were collected around the oil spill site of the creek. All the samples were separated into four different grain sizes, A (0.5mm), B (1mm), C (1.5mm) and D (2mm), making a total of 32 sediment. The activity concentration in sediment samples of grain sizes 0.5 mm, 1.0mm, 1.5mm and 2mm were determined. In sediment samples of grain sizes 0.5mm(A), the activity concentration of 226Ra , 232Th and 40K ranges from 2.24  to 20.032.43Bq/kg, 3.21 to 5.591.32 Bq/kg  and 24.46  4.06  to 795.99  6.20 Bq/kg respectively. For grain size of 1.0mm (B) the activity concentration of 226Ra, 232Th and 40K varies from 2.661.30 to 26.64Bq/kg, 2.19 0.95 to 33.47 Bq/kg and 43.38  to 739.21Bq/kg respectively. For grain size of 1.5mm (C) the activity concentration of 226Ra, 232Th and 40K varies from 4.401.09 to 33.93± 3.65 Bq/kg, 2.14±1.72 to 26.15±5.3 Bq/kg and 39.90±3.54 to 471.36±6.12 Bq/kg respectively.   For grain size of 2.0 mm (D) the activity concentration of 226Ra, 232Th and 40K varies from 4.81±1.84 to 40.29±2.50 Bq/kg, 2.19±1.40  to 83.20±3.90 Bq/kg and 39.01 ±4.00 to 497.56±5.87Bq/kg  respectively.  The result obtained shows there was no clear trend in variation of activity concentration with grain sizes. The mean values obtained are below the world average of 35, 30 and 400 Bq/kg for 226 Ra, 232Th and 40K for grain sizes of 0.5, 1.0, 1.5 and 2.0 mm respectively in all the communities except samples from Kolo that recorded 471.36±6.12 to 795.99±6.44 Bq/kg in all the grain sizes. Radiological risk parameters such as Absorbed Dose Rate, Annual Effective Dose Equivalent, Annual Gonadal Dose Equivalent, Annual Utility Index, Radioactivity Level Index, Hazard Indices and Excess Life Cancer Risk were estimated and values were found to be within the word average. From this study, the sediment of the given grain sizes will pose no radiological health risk if used in farming and in building construction.
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