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用于β-γ发射体活度标准化的可移动4πβ(LS)-γ符合计数系统的研制。

Development of a movable 4πβ(LS)-γ coincidence counting system for activity standardization of β-γ emitters.

作者信息

Lee J M, Agung A, Hwang S H, Lee K B, Hwang H Y

机构信息

Korea Research Institute of Standards and Science, Gajeong-ro, Yuseong-gu, Daejeon, 267, South Korea.

Mokwon University, Doanbuk-ro, Seo-gu, Daejeon, 88, South Korea.

出版信息

Appl Radiat Isot. 2021 Aug;174:109743. doi: 10.1016/j.apradiso.2021.109743. Epub 2021 Apr 24.

Abstract

A new movable 3PM-γ coincidence system, based on 4πβ(LS)-γ coincidence counting, for activity measurement of β-γ emitters has been designed at the Korea Research Institute of Standards and Science (KRISS). The system incorporates 3 PM tubes on the plane and two detectors placed above and below the center of the plane. The 3 PM tubes for β-counters in the plane are movable up to 100 mm from a liquid scintillation vial, thus enabling the variation of β-detection efficiencies by a geometrical technique. A NaI(Tl) γ-counter was set above for the present work. The β-event is determined by counting the logical sum of three double coincidences. All the necessary electronics, i.e., logical sum, adjusting the duration of dead-time of each counting channel and coincidence resolving times, and analyzing coincidence relation, were specially designed to be fabricated in an integrated circuit. Details of the detectors, the electronics, the overall movable 3PM-γ coincidence system are presented, as well as the results of investigations to assess its operating characteristics. Validation measurements have been performed with Co and Co sources. The highest β-detection efficiency achieved with Co and Co was 97% and 95%, respectively. The activity concentration determined with a new system agreed with calibrated values within the uncertainty range. Further results from validation measurements and the corresponding uncertainty budgets are presented.

摘要

韩国标准科学研究院(KRISS)设计了一种基于4πβ(LS)-γ符合计数的新型可移动3PM-γ符合系统,用于测量β-γ发射体的活度。该系统在平面上装有3个光电倍增管(PM管),并在平面中心的上方和下方各放置了一个探测器。平面上用于β计数器的3个PM管可从液体闪烁瓶移动至100毫米处,从而能够通过几何技术改变β探测效率。在本工作中,在上方设置了一个碘化钠(铊)γ计数器。β事件通过对三个双符合的逻辑和进行计数来确定。所有必要的电子设备,即逻辑和、调整每个计数通道的死时间持续时间和符合分辨时间以及分析符合关系,都经过专门设计以便在集成电路中制造。文中介绍了探测器、电子设备、整个可移动3PM-γ符合系统的详细情况,以及评估其运行特性的研究结果。已使用钴源和钴源进行了验证测量。使用钴源和钴源实现的最高β探测效率分别为97%和95%。新系统测定的活度浓度在不确定度范围内与校准值一致。文中还给出了验证测量的进一步结果以及相应的不确定度预算。

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