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The analysis of results of radon/thoron measurements performed with the use of nuclear track detectors

机译:利用核轨道探测器进行氡/钍射射射射率结果的分析

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Radon has been identified as one of the most important hazards, causing lung cancer. The most important isotope of radon is Rn-222 (3.83 d), while thoron Rn-220 (55 s) is treated as the less important isotope due to its short half-life. The radon/thoron hazard for people is related to inhalation of their decay products, but usually, only measurements of radon gas are done in dwellings. For such a purpose nuclear track detectors are used in most of the cases. Since several years simultaneous measurements are done to estimate thoron contribution to indoor radon and thoron exposure with the use of track detectors, too. Typically, a set of two detectors are applied and thoron concentrations are calculated on the basis of discriminative calculations. Unfortunately, very often results of these surveys are not accurate due to underestimation of the lower limit of detection (LLD) for thoron in the presence of elevated radon concentrations. Therefore an analysis of thoron LLDs in relationship to radon concentrations is presented.
机译:氡已被确定为最重要的危害之一,可导致肺癌。氡最重要的同位素是Rn-222(3.83 d),而thoron Rn-220(55 s)因半衰期短而被视为不太重要的同位素。氡/钍试剂对人体的危害与吸入其衰变产物有关,但通常仅在住宅中测量氡气。为此,大多数情况下都使用核径迹探测器。由于几年来同时进行了测量,以估计室内氡和钍射气暴露的钍射气贡献,也使用了径迹探测器。通常,应用一组两个探测器,并根据鉴别计算计算thoron浓度。不幸的是,这些调查的结果往往不准确,因为在氡浓度升高的情况下,低估了thoron的探测下限(LLD)。因此,本文分析了thoron LLD与氡浓度的关系。

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