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Variations in radon dosimetry under different assessment approaches in the Altamira Cave

机译:Altamira洞穴不同评估方法下氡气剂量的变化

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The atmosphere of caves is a special environment where it is necessary to take into account some particular characteristics when assessing the radon dose. The equilibrium factor (F) between radon and its progeny, and especially its unattached fraction (f(p)), is a key parameter in radon dose evaluation. In order to consider the specific features of the atmosphere in the Altamira Cave, the radon and particle concentrations have been measured. The mean annual radon concentration inside the cave over the period 2013-2019 is around 3500 Bq m(-3) with a standard deviation of 1833 Bq m(-3) and this exhibits seasonal variations. This value surpasses all international (WHO, IAEA, ICRP) upper action and reference levels (occupational and non-occupational). Dose rate levels expressed in mu Sv h(-1) were estimated for four different equilibrium scenarios between radon and its progeny Po-218, Pb-214, Bi-214 and Po-214. The most recent dose conversion factors have been used and the contribution made to the dose by the unattached fraction of radon progeny f(p) has been also assessed from the particle concentration. The results suggest that the mean annual dose levels show variations of up to 500% due to the range of F and the f(p) considered in this study. Given the high radon concentrations usually found in show caves, the best way to reduce this variability and its associated uncertainty in dose assessment is to conduct specific studies aimed at determining both F and f(p).
机译:洞穴的气氛是在评估氡剂量时有必要考虑一些特殊特征的特殊环境。氡和后代之间的平衡因子(F),特别是其未附加的分数(F(P))是氡剂量评估的关键参数。为了考虑Altamira洞穴中的大气的特定特征,已经测量氡和颗粒浓度。 2013 - 2019年期间洞内的平均年氡浓度为约3500bq m(-3),标准偏差为1833 bq m(-3),这呈现出季节性变化。该价值超越了所有国际(世卫组织,原子能机构,ICRP)的上行行动和参考水平(职业和非职业)。在氡及其后代PO-218,PB-214,Bi-214和PO-214之间估计在MU SV H(-1)中表达的剂量率水平估计四种不同的平衡场景。已经使用了最近的剂量转化因子,并且还通过颗粒浓度评估了通过未附加的氡子酰基(P)的氡子物级分的剂量对剂量的贡献。结果表明,由于本研究中考虑的F和F(P)的范围,平均年剂量水平显示出高达500%的变化。鉴于通常在展示洞中发现的高氡浓度,减少这种变异性及其在剂量评估中相关的不确定性的最佳方法是进行旨在确定F和F(P)的具体研究。

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