首页> 外文期刊>Journal of Environmental Radioactivity >Application of TLD devices for radon and thoron PAEC measurements in air is the concept of 'total PAEC' useful?
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Application of TLD devices for radon and thoron PAEC measurements in air is the concept of 'total PAEC' useful?

机译:TLD设备在空气中的氡和Thoron PAEC测量的应用是'总PAEC'有用的概念吗?

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The calibration of monitors of radon decay products is a difficult task, and even more so in the case of monitors detecting the products of thoron decay. An important issue here is the lack of primary standards, both in relation to the products of radon as well as thoron decay. In Poland, for many years, measurements of potential alpha energy concentration (PAEC) were carried out with the application of special devices, called ALFA probes. These in turn featured thermo-luminescent detectors (TLD), the readout of which provided information about the potential alpha energy, with no dependence on equilibrium or other factors alike. In this paper, we propose modifying this technique, which had been used only for measurements of products of radon decay. We specifically examine how it can be used to allow simultaneous measurements of radon and thoron PAECs.In employing the method, the idea is to use two sets of TL detectors in the same device during and after sampling. The first set of detectors is used to store the energy of alpha particles during the course and for a short while after the sampling, up to 5 h after its end. Using this method, the first set of detectors holds respectively the full and partial PAECs of products of radon and thoron decay. After that, the first set of TLDs is replaced with a second one. These are then left in the device for another 55 & ndash;60 h. This set contains only the PAEC from thoron decay products. Afterwards, it is necessary to subtract thoron PAEC from the first set result and add it to the result provided by the second set in order to estimate the PAEC for the products of thoron decay.On a practical level, using such a procedure can potentially difficult during underground or field monitoring nevertheless. This is why another approach can be adopted as well. This is specifically to leave the device for 60 h after sampling without any changes, the original set of TLDs providing a & ldquo;total & rdquo; PAEC readout & ndash; this being a sum of radon and thoron PAECs. In this paper, we will explore the value of using such a readout for the measurement that is carried out.
机译:氡衰减产品监视器的校准是一项艰巨的任务,在监视器检测到钍衰减的产品的情况下,甚至更多。这里的一个重要问题是缺乏主要标准,都与氡产品以及钍衰减。在波兰,多年来,通过应用特殊装置进行潜在的α能量浓度(PAEC)的测量,称为Alfa探针。这些反过来的特点热发光探测器(TLD),其中读数提供了有关潜在α能量的信息,没有对均衡或其他因素的依赖性。在本文中,我们提出了修改该技术,仅用于测量氡衰减的产品。我们专门研究如何使用它来允许氡和Thoron Paecs的同时测量。在采用该方法,想法是在采样期间和之后使用同一设备中的两组TL探测器。第一组探测器用于在过程中存储α颗粒的能量,并在取样后稍短,在其结束后最多可达5小时。使用这种方法,第一组检测器分别容纳氡和钍衰减产品的完整和部分PAEC。之后,第一组TLD被替换为第二组。然后将它们留在设备中另外55℃。60小时。此集仅包含来自Thoron腐烂产品的PAEC。之后,有必要从第一组结果中减去Thoron PAEC,并将其添加到第二组提供的结果中,以便估计Thoron衰减产品的PAEC.ON实际水平,使用这种程序可能难以困难在地下或现场监测期间。这就是为什么可以采用另一种方法。在没有任何变化的情况下,这将使设备留下60小时,没有任何变化,所以提供A&ldquo的原始TLD集; PAEC读数–这是氡和钍舞剧的总和。在本文中,我们将探讨使用此类读数进行测量的值。

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