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Testing and Calibration of CDs as Radon Detectors at Highly Variable Radon Concentrations and Temperatures

机译:在高度可变的Rad气浓度和温度下测试和校准作为Detect气检测器的CD

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摘要

The application of the compact disk (CD) method for radon measurements at mines, caves and other workplaces needs testing under highly variable exposure conditions. We present the results from a blind comparison of CDs exposed in the Laboratory of Natural Radiation (Saelices el Chico, Spain). During the exposure the temperature varied from 6.5 to 24.9 °C (average 12.6 °C) and the 222Rn activity concentrations varied from <10 Bq m−3 to 147 kBq m−3. Good correspondence was observed between the integrated 222Rn activity concentration determined by the reference instruments in the laboratory (122,500 ± 6100 kBq h m−3) and that assessed by analysis of the CDs at a depth 80 µm beneath the front surface (118,000 ± 12,000 kBq h m−3) and at a depth of 120 µm (106,000 ± 12,000 kBq h m−3). The theoretical modeling of the CD response under variable temperature and radon concentration suggested that the small bias is probably due to the time variation of the calibration factor because of the time variations of the temperature.
机译:将光盘(CD)方法用于矿山,洞穴和其他工作场所中的ra测量时,需要在高度可变的暴露条件下进行测试。我们介绍了在自然辐射实验室(西班牙Saelices el Chico)暴露的CD的盲目比较结果。在暴露期间,温度在6.5至24.9°C(平均12.6°C)之间变化, 222 Rn活度浓度从<10 Bq m -3 变化到147 kBq m -3 。在实验室中通过参考仪器确定的 222 Rn活度综合浓度(122,500±6100 kBq hm -3 )与通过CD分析得到的浓度之间存在良好的对应关系在正面下方80 µm的深度(118,000±12,000 kBq hm -3 )和120 µm的深度(106,000±12,000 kBq hm -3 )。可变温度和ra浓度下CD响应的理论模型表明,较小的偏差可能是由于温度随时间变化而导致的校正因子的时间变化。

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