首页> 外文期刊>Radiation Protection Dosimetry >A MODEL TO PREDICT ~(238)U IN AQUIFER ROCK BASED ON ~222Rn AND ~(226)Ra MEASUREMENT IN GROUNDWATER SAMPLES: A CASE STUDY AT SOUTH BENGALURU CITY, KARNATAKA, INDIA
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A MODEL TO PREDICT ~(238)U IN AQUIFER ROCK BASED ON ~222Rn AND ~(226)Ra MEASUREMENT IN GROUNDWATER SAMPLES: A CASE STUDY AT SOUTH BENGALURU CITY, KARNATAKA, INDIA

机译:基于〜222rn和〜(226)RA测量的地下水样本中的含水层岩体中预测〜(238)的模型 - 以南孟加拉邦,卡纳塔克卡,印度南孟加拉邦的案例研究

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摘要

Naturally occurring Rn-222 and Ra-226 concentrations were investigated in groundwater samples collected from different parts of South Bengaluru city using Smart RnDuo monitor developed indigenously by Bhabha Atomic Research Centre (BARC), India. The study area has been divided into two zones on the basis of external gamma radiation dose rates as zone A (100-200 nSv/h) and zone B (above 200 nSv/h). Radon concentration in groundwater for various sites, both supported (contribution from dissolved Ra-226 in water) and unsupported (contribution from aquifer rock), was estimated. Assuming that U-238 and Ra-226 are roughly in secular equilibrium in the aquifer rock, a model has been proposed to predict the uranium (U-238) content in the aquifer rocks using onsite measured Rn-222 concentration and dissolved Ra-226 concentration in the groundwater. Results of a case study carried out at South Bengaluru city, Karnataka, India have been discussed in the paper.
机译:在由印度Bhabha原子研究中心(Barc),印度的智能RNDUO MONITION从南孟加拉鲁市不同地区收集的地下水样本中研究了自然的RN-222和RA-226浓度。该研究区域基于外部γ辐射剂量率作为区域A(100-200 nSV / h)和区域B(高于200nsv / h)。据估计,各种位点的地下水中的地下水中的氡浓度(来自水中的溶解RA-226)和不受支持的(来自含水层岩石的贡献)。假设U-238和RA-226大致在含水层岩石中的世俗平衡,已经提出了一种模型,以使用现场测量的RN-222浓度并溶解RA-226预测含水层岩石中的铀(U-238)含量地下水中的浓度。在纸上讨论了南孟加拉邦市,印度南班加罗鲁市进行了案例研究。

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  • 来源
    《Radiation Protection Dosimetry》 |2019年第1期|58-66|共9页
  • 作者单位

    BMS Coll Engn Dept Phys Bengaluru 560019 India;

    Bhabha Atom Res Ctr Radiol Phys & Advisory Div Mumbai 400094 Maharashtra India;

    BMS Coll Engn Dept Phys Bengaluru 560019 India;

    BMS Coll Engn Dept Phys Bengaluru 560019 India;

    Bhabha Atom Res Ctr Radiol Phys & Advisory Div Mumbai 400094 Maharashtra India;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
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  • 正文语种 eng
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