Spatial distribution modeling of radiometric analysis and radiation dose estimations in drinking water and soil samples from Siirt city in Türkiye

N. Damla, Ahmet Altun, C. M. Yeşilkanat, H. Taşkın, Ayhan Kara, U. Isik
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Abstract

Abstract In this study, the spatial distribution model has been aimed to characterize the radiometric parameters in drinking water and soil samples of Siirt City in Türkiye using the geostatistical method. The gross α and β measurements in the water samples and radiometric measurements in the soil samples were performed using a gas proportional α/β counter (Berthold, LB 770 model) and a gamma spectroscopy system (HPGe-detector), respectively. The spatial distribution maps, covering the whole region using the ordinary kriging method, were created visually. The gross α and β activities in the water samples varied from 9 to 40 and from 21 to 252 mBq L−1. The corresponding arithmetic average of the annual effective dose of gross α and β of drinking water was estimated to be 5.3 and 52.3 μSv y−1, respectively. In soil samples, the arithmetic average values of 238U, 232Th, 40K, and 137Cs radionuclides were 17 ± 6, 20 ± 7, 445 ± 166, and 4 ± 6 Bq kg−1, respectively. The arithmetic average absorbed dose rate (D), annual effective dose (AED), and excess lifetime cancer risk (ELCR) values in soil samples were calculated as 38 nGy h−1, 0.05 mSv y−1, and 0.165 × 10−3, respectively, for soil samples. The radiometric parameters of the sample were lower than those of the guideline levels recommended in the literature. Furthermore, the interpolation maps were evaluated in terms of the soil structure of the region.
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新疆锡尔特市饮用水和土壤样品辐射分析的空间分布模型和辐射剂量估算
摘要本文采用地统计学方法,建立了基耶尔省锡尔特市饮用水和土壤样品中辐射参数的空间分布模型。水样中的总α和β测量和土壤样品中的辐射测量分别使用气体比例α/β计数器(Berthold, LB 770型号)和伽马能谱系统(hpge检测器)进行。利用普通克里格法绘制了覆盖整个区域的空间分布图。水样中α和β的总活性分别为9 ~ 40和21 ~ 252 mBq L−1。饮用水中总α和β年有效剂量的算术平均值分别为5.3和52.3 μSv y−1。土壤样品中238U、232Th、40K和137Cs的算术平均值分别为17±6、20±7、445±166和4±6 Bq kg−1。计算得到土壤样品的算术平均吸收剂量率(D)、年有效剂量(AED)和过量终身癌症风险(ELCR)值分别为38 nGy h−1、0.05 mSv y−1和0.165 × 10−3。样品的放射学参数低于文献中推荐的指导水平。此外,根据该地区的土壤结构对插值图进行了评价。
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