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Development of a radioxenon measurement system and its application in monitoring Fukushima nuclear accident

机译:放射性氙测量系统的开发及其在福岛核事故监测中的应用

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An HPGe gamma-ray spectrometry system for radioxenon isotopes detection has been developed. The system was comprised of two low-energy planar HPGe detectors that were horizontally and oppositely placed, and a gas source cell made of carbon fiber in both sides was used. The spectra obtained simultaneously by the two HPGe detectors were analyzed by summing spectrum method. After the radioactive concentration of ~(133)Xe was determined with three internal gas proportional counters, the efficiency of 81 keV gamma-ray for ~(133)Xe was calibrated to be 0.50 (1), and the Minimum Detectable Activity (MDA) for ~(133)Xe detection was determined to be 10 mBq during 1 day measurement time. Finally, the system was applied in atmospheric ~(133)Xe monitoring at Xi'an of China after the Fukushima nuclear accident.
机译:已经开发了用于放射性氙同位素检测的HPGe伽马射线光谱分析系统。该系统由两个水平放置且相对放置的低能平面HPGe探测器组成,并使用了两侧均由碳纤维制成的气体源单元。通过求和光谱法分析了由两个HPGe探测器同时获得的光谱。用三个内部气体比例计数器确定〜(133)Xe的放射性浓度后,将〜(133)Xe的81 keV伽马射线效率校准为0.50(1),并且最低可检测活性(MDA)在1天的测量时间内〜(133)Xe的检测值确定为10 mBq。最后,该系统被应用于福岛核事故后中国西安的大气〜(133)Xe监测。

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