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External dose-rate conversion factors of radionuclides for air submersion ground surface contamination and water immersion based on the new ICRP dosimetric setting

机译:根据新的ICRP剂量学设置用于空气浸没地面污染和水浸的放射性核素的外部剂量率转换因子

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摘要

For the assessment of external doses due to contaminated environment, the dose-rate conversion factors (DCFs) prescribed in Federal Guidance Report 12 (FGR 12) and FGR 13 have been widely used. Recently, there were significant changes in dosimetric models and parameters, which include the use of the Reference Male and Female Phantoms and the revised tissue weighting factors, as well as the updated decay data of radionuclides. In this study, the DCFs for effective and equivalent doses were calculated for three exposure settings: skyshine, groundshine and water immersion. Doses to the Reference Phantoms were calculated by Monte Carlo simulations with the MCNPX 2.7.0 radiation transport code for 26 mono-energy photons between 0.01 and 10 MeV. The transport calculations were performed for the source volume within the cut-off distances practically contributing to the dose rates, which were determined by a simplified calculation model. For small tissues for which the reduction of variances are difficult, the equivalent dose ratios to a larger tissue (with lower statistical errors) nearby were employed to make the calculation efficient. Empirical response functions relating photon energies, and the organ equivalent doses or the effective doses were then derived by the use of cubic-spline fitting of the resulting doses for 26 energy points. The DCFs for all radionuclides considered important were evaluated by combining the photon emission data of the radionuclide and the empirical response functions. Finally, contributions of accompanied beta particles to the skin equivalent doses and the effective doses were calculated separately and added to the DCFs. For radionuclides considered in this study, the new DCFs for the three exposure settings were within ±10 % when compared with DCFs in FGR 13.
机译:为了评估受污染环境引起的外部剂量,联邦指导报告12(FGR 12)和FGR 13中规定的剂量率转换因子(DCF)已被广泛使用。最近,剂量学模型和参数发生了重大变化,其中包括参考男性和女性幻影的使用以及修改后的组织加权因子,以及放射性核素的更新衰减数据。在这项研究中,有效剂量和等效剂量的DCFs针对三种暴露设置进行了计算:天空,地面和水浸。通过Monte Carlo模拟,使用MCNPX 2.7.0辐射输运代码计算0.01到10 MeV之间的26个单能光子,从而计算出参考幻影的剂量。在实际上影响剂量率的截止距离内,针对源体积执行运输计算,这由简化的计算模型确定。对于难以减小方差的小组织,采用与附近较大组织(具有较低统计误差)的等效剂量比来提高计算效率。然后,通过使用三次样条拟合结果剂量的26个能量点,得出与光子能量以及器官等效剂量或有效剂量相关的经验响应函数。通过组合放射性核素的光子发射数据和经验响应函数,评估了所有被认为重要的放射性核素的DCF。最后,分别计算伴随的β粒子对皮肤等效剂量和有效剂量的贡献,并将其添加到DCF中。对于本研究中考虑的放射性核素,与FGR 13中的DCF相比,三种暴露设置下的新DCF均在±10%以内。

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