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首页> 外文期刊>IEEE Transactions on Nuclear Science >Cross-Talk Characterization in Passive Neutron Coincidence Counting of Radioactive Waste Drums With Plastic Scintillators
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Cross-Talk Characterization in Passive Neutron Coincidence Counting of Radioactive Waste Drums With Plastic Scintillators

机译:带有塑料闪烁体的放射性废料桶的被动中子符合计数中的交叉对话特征

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摘要

This paper reports on a numerical feasibility study of a passive neutron coincidence counting system for radioactive waste drums with plastic scintillators. The motivation is to replace gas counters generally used for this type of measurement. Indeed, plastic scintillators present several advantages for the measurement of neutron coincidences such as a good efficiency for detecting fast neutrons, short detection time, and low cost comparatively to . However, unlike counters, their high sensitivity to gamma rays and cross talk constitutes a drawback as parasite random and true coincidences are detected together with the useful signal of plutonium. Simulations are performed using the Monte Carlo transport code MCNPX-PoliMi v2.0 coupled to data processing algorithms developed with ROOT data analysis software. Performances of the coincidence counting system are studied for the case of a vitrified waste drum containing Pu and , focusing particularly on multiplicity 1 and 2, i.e., 2 or 3 pulses recorded in a short time gate in different detectors. Cross talk induced by neutrons and gamma rays has been characterized in terms of time and distance between detectors, and strategies to limit this phenomenon are reported, consisting of ignoring neighboring detectors signal. A significant improvement of the Pu to ratio for multiplicity 2 coincidences has thus been obtained, at the expense of counting statistics. Alternative case studies with organic and metallic matrixes of technological wastes are also reported, for which the part of useful signal - f plutonium is significantly higher, showing the feasibility of the measurement method.
机译:本文报道了带有塑料闪烁体的放射性废料桶的被动中子符合计数系统的数值可行性研究。动机是替换通常用于此类测量的气体计数器。的确,与之相比,塑料闪烁体在中子重合的测量中具有几个优点,例如检测快中子的效率高,检测时间短,成本低。但是,与计数器不同,它们对伽玛射线和串扰的高灵敏度构成了一个缺点,因为可以检测到寄生随机和真正的巧合以及有用的signal信号。使用蒙特卡洛运输代码MCNPX-PoliMi v2.0结合使用ROOT数据分析软件开发的数据处理算法进行仿真。对于包含Pu和Pu的玻璃化废料桶的情况,研究了同时计数系统的性能,特别是着重于多重性1和2,即在不同检测器中的短时间门中记录的2或3个脉冲。由中子和伽马射线引起的串扰已经根据检测器之间的时间和距离进行了表征,并且报告了限制这种现象的策略,其中包括忽略相邻的检测器信号。因此,以计数统计为代价,获得了重合度2重合的Pu比率的显着提高。还报告了利用技术废物的有机和金属基质进行的替代案例研究,其有用信号的一部分-f-要高得多,这表明了测量方法的可行性。

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