印度卡纳塔克邦图姆库尔工业区地下水氡浓度及理化参数研究

S.R. Nagabhushana, Srinivasa E, uresh S, Sannappa J
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引用次数: 3

摘要

摘要采用放射测量法对图木库尔地区Hirehalli、Antharasanahalli、Satyamangala和Vasanthanarasapura工业区周边地下水中的氡浓度进行了测定。利用基于伽马能谱法的HPGe探测器,测定了研究区不同岩石样品中镭(226 Ra)、钍(232 Th)和钾(40 K)等原始放射性核素的活度。采用标准方法对样品的理化参数进行了估计。氡浓度平均值为5.61 ~ 160.50 Bql -1,平均值为75.40 Bql -1。总有效剂量受到工人和公众由于氡吸入和摄入变化从15.32μSvy 1到438.20μSvy 1平均值为205.84μSvy 1,平均值等原始无线电核素226 Ra 232和40 K的岩石样本研究区域不同20±1.5 150±3 Bqkg 25±0.4到200±2.5 Bqkg 1和450±4到1800±15 Bqkg 1分别和相应的平均值是65.6±1.3 Bqkg 1, 81.8±1.5 Bqkg 1,854.2±12 Bqkg -1。这些数值与全球平均值相当。理化参数平均值均在美国环保局和世界卫生组织规定的安全水平内。结果表明,研究区水样中氡浓度与理化参数之间没有明显的相关性。地下水中的氡浓度主要取决于含水层的类型及其矿物组成。
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Study on Radon Concentration in ground water and Physicochemical parameters of Tumkur industrial areas, Karnataka State, India
Received: 19/Mar/2019, Accepted: 13/Apr/2019, Online: 30/Apr/2019 AbstractThe concentration of radon in the ground water around Tumkur industrial areas namely Hirehalli, Antharasanahalli, Satyamangala, and Vasanthanarasapura were measured by emanometry technique. The activity of primordial radionuclides such as Radium ( 226 Ra), Thorium ( 232 Th) and Potassium ( 40 K) in different rock samples of the study area were estimated by HPGe detector based on gamma ray spectrometry. Standard methods have been applied to estimate the physicochemical parameters of the samples. The average value of radon concentration varies from 5.61 Bql -1 to 160.50 Bql -1 with an average value of 75.40 Bql -1 . The total effective dose received by workers and publics due to radon inhalation and ingestion varies from 15.32 μSvy -1 to 438.20 μSvy -1 with an average value of 205.84 μSvy -1 .The average value of primordial radio nuclides such as 226 Ra, 232 Th and 40 K in the rock samples of the study area varies from 20±1.5 to 150±3 Bqkg -1 , 25±0.4 to 200±2.5 Bqkg -1 and 450±4 to 1800±15 Bqkg -1 respectively and their corresponding mean values are 65.6±1.3 Bqkg -1 , 81.8±1.5 Bqkg -1 , and 854.2±12 Bqkg -1 respectively. These values are comparable with global average. The average values of Physico chemical parameter are within the safe level as prescribed by USEPA and WHO. The results shows noteworthy correlation cannot be observed between concentration of radon and physicochemical parameters in water samples in the study area. The radon concentration in ground water mainly depends on the type of aquifers and its mineral compositions.
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