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Development and calibration of a real-time airborne radioactivity monitor using direct gamma-ray spectrometry with two scintillation detectors

机译:使用直接伽马射线光谱仪和两个闪烁探测器开发和校准实时机载放射性监测仪

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The implementation of in-situ gamma-ray spectrometry in an automatic real-time environmental radiation surveillance network can help to identify and characterize abnormal radioactivity increases quickly. For this reason, a Real-time Airborne Radioactivity Monitor using direct gamma-ray spectrometry with two scintillation detectors (RARM-D2) was developed. The two scintillation detectors in the RARM-D2 are strategically shielded with Pb to permit the separate measurement of the airborne isotopes with respect to the deposited isotopes.In this paper, we describe the main aspects of the development and calibration of the RARM-D2 when using Nal(Tl) or LaBr_3(Ce) detectors. The calibration of the monitor was performed experimentally with the exception of the efficiency curve, which was set using Monte Carlo (MC) simulations with the EGS5 code system. Prior to setting the efficiency curve, the effect of the radioactive source term size on the efficiency calculations was studied for the gamma-rays from ~(137)Cs. Finally, to study the measurement capabilities of the RARM-D2, the minimum detectable activity concentrations for ~(131)I and ~(137)Cs were calculated for typical spectra at different integration times.
机译:在自动实时环境辐射监视网络中实施原位伽马射线光谱分析可以帮助识别和表征迅速增加的异常放射性。因此,开发了使用带有两个闪烁探测器(RARM-D2)的直接伽马射线能谱仪的实时机载放射性监测仪。 RARM-D2中的两个闪烁探测器被策略性地用Pb屏蔽,以允许相对于沉积的同位素分别测量空气中的同位素。在本文中,我们描述了RARM-D2的开发和校准的主要方面使用Nal(Tl)或LaBr_3(Ce)检测器。监控器的校准是通过实验进行的,除了效率曲线外,效率曲线是使用EGS5代码系统的蒙特卡罗(MC)仿真设置的。在设置效率曲线之前,针对〜(137)Cs的γ射线研究了放射源项大小对效率计算的影响。最后,为了研究RARM-D2的测量能力,计算了在不同积分时间下典型光谱的〜(131)I和〜(137)Cs的最低可检测活性浓度。

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