Impact of radon on personal contamination monitors at the exit of the restricted controlled areas in EDF nuclear power plant

IF 1.4 4区 医学 Q4 ENVIRONMENTAL SCIENCES Radioprotection Pub Date : 2023-05-25 DOI:10.1051/radiopro/2023018
M. Karst, C. Cerna, T. Le Noblet, J. Jouve
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Abstract

Background: Between 2008 and 2017, EDF has progressively replaced its old Personal Contamination Monitors (PCM) with a new generation to strengthen the control of the workers at the exit of the restricted controlled areas. One of the novelties of the new PCM generation is the introduction of gamma channels which, coupled to the beta channel, allows a more reliable and more precise measurement. The new PCM also includes a better monitoring of the C2 portals alarms triggering system, a greater detection surface to minimize the dead zone and carries out morphological compensation to take into account the attenuation of the gamma background by the body. This new PCM is very efficient and capable of detecting low contamination activities. The sensitivity of this monitoring system is such that the solid progeny of 222Rn incorporated in clothes (such as the 218Po and the 214Po) could in some cases be detected and trigger the C2 portals alarm. Objective: In order to quantify the impact of radon (222Rn) and its progeny on the C2 portals triggers, a specific study has been conducted. Beyond the physical aspect, several purposes are targeted: -To provide quantitative explanations about the C2 alarms attributed to radon and determine which channels are more affected by the 222Rn progeny; -To determine the existence of a relation between C2 alarms and high 222Rn volume activity; -To optimize practices at the exit of the Restricted Controlled Areas (RCA). The study consisted in measuring the activity of radon progeny deposited on several types of suits used in EDF Nuclear Power Plants (NPPs). To assess the impact of the 222Rn, several factors have been studied such as the 222Rn exposure time, the 222Rn concentration and the nature of textile fibers constituting clothes. For this study, several facilities from the Laboratoire de Physique des deux infinis de Bordeaux (LP2i Bordeaux) have been used, including a 222Rn emanation standard sources and various emanation chambers between 60 liters and 750 liters. A specific calibration method has been developed. The 222Rn concentration in the sample exposure environment are verified both using a commercial [1] and experimental high sensitivity radon detectors. The measurements of the 222Rn progeny on clothes are made immediately after exposure by gamma spectrometry control on a High Purity Germanium (HPGe) detector. This experiment has been carried out at the PRISNA measurement platform (Plateforme Régionale Interdisciplinaire de Spectrométrie Nucléaire en Aquitaine) located in LP2I Bordeaux. Conclusions: In this study several phenomena have been highlighted for a better understanding of the C2 portal triggering. A linearity between the 222Rn volume concentration activity and its progeny activity on clothes has been observed, as well as a saturation of the progeny activities after 2 hours of exposition. We also validate that in presence of 222Rn volume concentration activity lower than 300 Bq/m3, an alarm in beta channels of C2 portals can be triggered because of the presence of the radon progeny on clothes. The triggering of the gamma channels could appear only if the volume concentration activity of radon is higher than 3,000 Bq/m3. The results obtained in this study could led to optimize and harmonize the practices at the exit of Restricted Controlled Area (RCA).
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法国电力核电厂限制控制区出口氡对个人污染监测仪的影响
背景:2008年至2017年间,EDF逐步将旧的个人污染监测仪(PCM)替换为新一代,以加强对限制控制区出口工人的控制。新一代PCM的新颖之处之一是引入了伽马通道,它与β通道耦合,可以进行更可靠和更精确的测量。新的PCM还包括更好地监测C2门户警报触发系统,更大的检测表面以最大限度地减少死区,并进行形态学补偿,以考虑人体对伽马背景的衰减。这种新的PCM是非常有效的,能够检测低污染活动。这种监测系统的灵敏度是这样的,在某些情况下,衣服(如218Po和214Po)中含有的222Rn的固体子体可以被检测到并触发C2门户警报。目的:为了量化氡(222Rn)及其子代对C2门户触发器的影响,进行了具体的研究。在物理方面之外,有几个目标:-提供归因于氡的C2警报的定量解释,并确定哪些通道受222Rn子代的影响更大;-确定C2报警与高222Rn音量活动之间是否存在关系;-优化限制控制区(RCA)出口的操作。本研究测量了法国电力公司核电厂使用的几种防护服上氡子体的活性。为了评估222Rn的影响,研究了几个因素,如222Rn暴露时间、222Rn浓度和构成衣服的纺织纤维的性质。在这项研究中,使用了波尔多双无限物理实验室(LP2i Bordeaux)的几个设备,包括222Rn辐射标准源和60升到750升之间的各种辐射室。开发了一种特殊的校准方法。使用商业[1]和实验高灵敏度氡探测器验证了样品暴露环境中的222Rn浓度。衣服上的222Rn后代在暴露后立即通过高纯度锗(HPGe)探测器的伽马能谱控制进行测量。本实验在位于波尔多LP2I的PRISNA测量平台(Plateforme r 交叉学科(Interdisciplinaire de spectrom ))上进行。结论:为了更好地理解C2门脉触发,本研究强调了几种现象。222Rn体积浓度活性与其在衣服上的子代活性之间存在线性关系,并且在暴露2小时后子代活性达到饱和。我们还验证了在222Rn体积浓度活性低于300 Bq/m3的情况下,由于衣服上存在氡子代,可以触发C2门户β通道的警报。只有氡的体积浓度活度高于3000 Bq/m3时才会出现伽马通道的触发。研究结果对优化和协调限制控制区(RCA)出口操作具有指导意义。
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来源期刊
Radioprotection
Radioprotection ENVIRONMENTAL SCIENCES-PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH
CiteScore
3.30
自引率
54.50%
发文量
35
审稿时长
>12 weeks
期刊介绍: Radioprotection publishes articles on all aspects of radiological protection, including non-ionising as well as ionising radiations. Fields of interest range from research, development and theory to operational matters, education and training. The very wide spectrum of its topics includes (theoretical and practical aspects): dosimetry, instrument development, specialized measuring techniques, epidemiology, biological effects (in vivo and in vitro) and risk and environmental impact assessments.
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