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Active Neutron Monitoring of Nuclear Fuel Cycle Fissile Materials

机译:核燃料循环裂变材料的活跃中子监测

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摘要

A decommissioning of nuclear fuel cycle facilities is inseparable from the problems of radioactive waste disposal. One of these problems is the categorization of a waste according to the content of beta- and alpha-emitters. Beta-emitters can be identified by existing technologies; however, the trouble arises when detecting alpha-emitting elements, primarily the long-lived members of the actinium chain with the specific activity of kBq/kg when they are spread inside a structural material. The report considers an application of an active neutron method-a differential die-away technology for reliable control of small quantities of FM.The essence of this method consists in sounding the interrogated item by pulsed thermal neutrons and recording the induced fission neutrons. The ratio of the number of fission neutrons to the number of source neutrons gives the normalized number of fission neutrons that is linked to the FM mass in the interrogated object. The work presents the scheme and principle of operation of an experimental device, as well as the results of measurement of concrete structures that contain internal traces of fissile materials. Analysis of the results shows that the proposed method allows the detection of ~ 6 mg of fissile material per kg of concrete with possible localization (cartogram) of the contaminated area.
机译:核燃料循环设施的退役与放射性废物处理问题不可分割。其中一个问题是根据β-和α-发射器的含量分类废物。 β发射器可以通过现有技术识别;然而,在检测α发射元件时出现的麻烦主要是当它们在结构材料内部涂布时的抗碱链的长寿命成员,其特定的KBQ / kg。该报告考虑了一种活性中子方法的应用 - 差分误差技术,可用于可靠控制少量FM。该方法的本质包括脉冲热中子的询问项目并记录诱导的裂变中子。裂变中子的数量与源中子的数量的比率给出了与询问物体中的Fm质量相关的常规化裂变中子。该工作介绍了实验装置的操作方案和原理,以及含有裂变材料内部痕迹的混凝土结构的测量结果。结果分析表明,该方法允许每千克混凝土检测〜6mg裂变材料,污染区域的可能定位(图中文图)。

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