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Development of portable Liquid Scintillation counters for on-site primary measurement of radionuclides using the Triple-To-Double Coincidence Ratio method

机译:使用三重对重符合率方法开发便携式液体闪烁计数器,用于放射性核素的现场初级测量

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The Triple-to-Double Coincidence Ratio (TDCR) method in Liquid Scintillation counting (LSC) is a primary radionuclide standardization method widely used in National Metrology laboratories and was primarily developed for the activity measurement of beta emitters. It is based on liquid scintillation: the light is detected by three photomultipliers (PM) and the detection efficiency is evaluated by using a model which uses the ratio of triple-to-double coincidences between the PM tubes. Up to now, most of current TDCR systems were locally-made metrology instruments neither aimed at nor suitable for in-situ measurements. In the framework of the European Metrofission project, a work package was dedicated to the realisation of miniature self-calibrated primary TDCR systems, which are state-of-the-art, for use on-site. The challenge was to develop a versatile portable, table-top designed instrument, from this metrology device. This implied improvements for the miniaturisation of the detection chamber, for the miniaturisation of electronic modules by exploring the possibilities of digital treatment, and for the validation of models and extension of them to nuclides with special beta spectrum shapes, to nuclides with complex decay schemes including many gamma-rays and to nuclides with higher atomic number decaying by electron capture. Four prototypes of counters were built by the Metrofission partners ENEA (Italy), LNHB (France), NPL (UK) and PTB (Germany) using various technical approaches. The paper describes these prototypes and provides some details on the choice of the technical options concerning the design of the optical chamber, of the photodetectors and of the acquisition system.
机译:液体闪烁计数(LSC)中的三重对偶符合率(TDCR)方法是一种广泛用于国家计量实验室的主要放射性核素标准化方法,主要用于测量β发射体的活性。它基于液体闪烁:通过三个光电倍增管(PM)检测光,并通过使用一个模型来评估检测效率,该模型使用PM管之间的三重符合率。到目前为止,当前大多数TDCR系统都是本地制造的计量仪器,既不针对也不适合于现场测量。在欧洲都市裂变项目的框架内,工作包专门用于实现微型自校准的原始TDCR系统,该系统是最先进的,可以在现场使用。挑战在于用这种计量设备开发一种多功能的便携式台式设计仪器。这意味着对探测室的小型化,通过探索数字处理的可能性,对电子模块的小型化,对模型的验证以及将其扩展到具有特殊β光谱形状的核素,到具有复杂衰减方案的核素等方面的改进。许多伽马射线和原子序数更高的核素由于电子俘获而衰减。 Metrofission合作伙伴ENEA(意大利),LNHB(法国),NPL(英国)和PTB(德国)使用各种技术方法制造了四个柜台原型。本文介绍了这些原型,并提供了有关光学室,光电探测器和采集系统设计的技术选择方面的一些细节。

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