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QUANTIFICATION OF BACK DIFFUSION IN RADON AND THORON EXHALATION RATE MEASUREMENTS

机译:氡和钍呼气速率测量后反扩散的量化

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摘要

The radon (~(222)Rn) and thoron (~(220)Rn) fluxes from the soil and building materials are the major contributors to their indoor levels. Hence, the measurement of radon and thoron exhalation rates from the source matrix becomes the foremost step in controlling the indoor radon and thoron exposure. It is a challenge to measure the exhalation rates without disturbing the natural conditions. The back-diffusion phenomenon modifies the exhalation rate. The work presented here is to measure the back-diffusion coefficient and takes it into consideration while estimating the exhalation rate. For radon measurements, the back-diffusion coefficient and the free exhalation rates were simultaneously estimated by adopting a novel methodology. The leak rate of the experimental setup measured by this methodology was agreeable with the value measured by adopting the standard technique. In the case of thoron, the back-diffusion effect was found to be negligible for the present experimental conditions and it is duly explained. The above results were obtained by analyzing two soil samples with high ~(238)U and ~(232)Th content collected from monazite-rich coastal area.
机译:来自土壤和建筑材料的氡(〜(222)rn)和钍(〜(220)rn)势倍,是他们室内水平的主要贡献者。因此,从源矩阵的氡和钍呼气速率的测量成为控制室内氡和钍曝光的前进。在不扰乱自然条件的情况下测量呼气率是一项挑战。背扩散现象改变呼气率。这里提出的工作是测量后扩散系数,并在估计呼气率时考虑。对于氡测量,通过采用新方法,同时估计后扩散系数和自由呼气速率。通过该方法测量的实验装置的泄漏率同意通过采用标准技术测量的值。在胸腔的情况下,发现对目前的实验条件可忽略不计,并进行了适当的解释。通过分析来自富含Monazite的沿海地区的〜(232)含量的高〜(238)u和〜(232)含量来获得上述结果。

著录项

  • 来源
    《Radiation Protection Dosimetry》 |2020年第2期|182-189|共8页
  • 作者单位

    Radiological and Environmental Safety Division Indira Gandhi Center for Atomic Research Kalpakkam Tamilnadu India Homi Bhabha National Institute Indira Gandhi Center for Atomic Research Kalpakkam 603102 Tamilnadu India;

    Radiological and Environmental Safety Division Indira Gandhi Center for Atomic Research Kalpakkam Tamilnadu India;

    Radiological and Environmental Safety Division Indira Gandhi Center for Atomic Research Kalpakkam Tamilnadu India Homi Bhabha National Institute Indira Gandhi Center for Atomic Research Kalpakkam 603102 Tamilnadu India;

    Radiological and Environmental Safety Division Indira Gandhi Center for Atomic Research Kalpakkam Tamilnadu India Homi Bhabha National Institute Indira Gandhi Center for Atomic Research Kalpakkam 603102 Tamilnadu India;

    Radiological and Environmental Safety Division Indira Gandhi Center for Atomic Research Kalpakkam Tamilnadu India Homi Bhabha National Institute Indira Gandhi Center for Atomic Research Kalpakkam 603102 Tamilnadu India;

    Radiological and Environmental Safety Division Indira Gandhi Center for Atomic Research Kalpakkam Tamilnadu India Homi Bhabha National Institute Indira Gandhi Center for Atomic Research Kalpakkam 603102 Tamilnadu India;

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