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Implementation of gamma-ray spectrometry in two real-time water monitors using NaI(Tl) scintillation detectors

机译:使用Nai(TL)闪烁探测器的两个实时水监测器中的γ射线光谱法

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摘要

In this study, the implementation of gamma-ray spectrometry in two real-time water monitors using 2. in.×2. in. NaI(Tl) scintillation detectors is described. These monitors collect the water from the river through a pump and it is analyzed in a vessel, which is shielded with Pb. The full calibration of the monitors was performed experimentally, except for the efficiency curve, which was set using validated Monte Carlo simulations with the EGS5 code system. After the calibration, the monitors permitted the identification and quantification of the involved isotopes in a possible radioactive increment and made it possible to discard possible leaks in the nuclear plants. As an example, a radiological increment during rain is used to show the advantages of gamma-ray spectrometry. To study the capabilities of the monitor, the minimum detectable activity concentrations for 131I, 137Cs and 40K are presented for different integration times.
机译:在这项研究中,使用2.×2的两个实时水监视器中的γ射线光谱法。×2。 在。nai(tl)闪烁探测器描述。 这些监视器通过泵从河流中从河流中收集水,并在血管中分析,该血管被屏蔽为PB。 除了使用验证的蒙特卡罗模拟与EGS5代码系统的效率曲线进行了实验,监视器的全部校准。 在校准之后,监测器允许在可能的放射性增量中识别和定量所涉及的同位素,并使得可以丢弃在核设备中可能的泄漏。 例如,雨期间的放射性增量用于显示γ射线光谱法的优点。 为了研究显示器的能力,针对不同的积分时间提出了131I,137C和40K的最小可检测活性浓度。

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