基于kriging插值法的泉水和井水氡的地理空间分析

Abdul Razzaq Khan, M. Rafique, S. Rahman, M. Basharat, Chand Shahzadi, Ishtiaq Ahmed
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引用次数: 11

摘要

在穆扎法拉巴德市及其郊区采集的101个泉水和井水样本中测量了氡活度浓度。采用美国Durridge公司生产的RAD7电子氡检测仪对60个泉水和41个井水样品进行了分析,以估计氡的携带活性及其相关影响。结果表明:泉水的氡活度变化范围为0.246±0.348 ~ 34.36±5.54 Bq L−1,平均值为10.16±2.42 Bq L−1;井水氡活度变化范围为0.86±0.10 ~ 16.12±0.22 Bq L−1,平均值为4.21±0.13 Bq L−1。氡传播活性的浓度随后被用于确定吸入和摄入剂量。泉水样品的吸入和摄入剂量分别为0.0062±0.0087 ~ 0.865±0.14 mSv y - 1和0.052±0.073 ~ 7.22±1.16 mSv y - 1。井水的吸入和摄入剂量分别为0.022±0.0025 ~ 0.41±0.0054 mSv y - 1和0.18±0.021 ~ 3.38±0.045 mSv y - 1。33.33%的泉水和7.32%的井水样本的值高于美国环境保护署的建议水平(~ 11.1 Bq L−1)。由于单次测量不能很好地估计研究区域内的未采样区域,因此采用地质统计学方法Kriging插值法对研究区域内水体氡的空间分布进行了估计。Kriging测图显示,在砂岩、粉砂岩、页岩和粘土岩岩性组成的地区,氡浓度较高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geo-spatial analysis of radon in spring and well water using kriging interpolation method
Radon activity concentration was measured in 101 springs and well water samples collected from Muzaffarabad city and its outskirts. Sixty springs and 41 well water samples were analyzed, using RAD7, an electronic radon detector manufactured by Durridge Company Inc., for the estimation of radon borne activities and their relevant effects. Results obtained show that for spring water, the water borne radon activity varied from 0.246 ± 0.348 to 34.36 ± 5.54 Bq L −1 with an average value of 10.16 ± 2.42 Bq L −1 . For well water, the water borne radon activity varied from 0.86 ± 0.10 to 16.12 ± 0.22 Bq L −1 with an average value of 4.21 ± 0.13 Bq L −1 . Concentration of radon borne activities were subsequently used for determination of inhalation and ingestion doses. The inhalation and ingestion doses for spring water samples varied from 0.0062 ± 0.0087 to 0.865 ± 0.14 mSv y −1 and 0.052± 0.073 to 7.22 ± 1.16 mSv y −1 , respectively. The inhalation and ingestion doses for well water varied from 0.022 ± 0.0025 to 0.41 ± 0.0054 mSv y −1 and 0.18± 0.021 to 3.38 ± 0.045 mSv y −1 , respectively. 33.33% of spring and 7.32% of well water samples were found with values above the recommendation levels of the United States Environmental Protection Agency (∼11.1 Bq L −1 ). As a single measurement cannot serve as a best estimate of the unsampled areas in the region, Kriging interpolation method, a geo-statistical method, was used to get an estimate of spatial distribution of water borne radon in the area of study. Kriging mapping shows that higher radon concentrations are found in areas with lithology consisting of sandstones, siltstones, shales and claystones.
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