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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Determination of the ~(235)U content in uranium oxide particles by fission track analysis
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Determination of the ~(235)U content in uranium oxide particles by fission track analysis

机译:裂变径迹法测定铀氧化物颗粒中〜(235)U含量

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摘要

One of the most important tasks of nuclear safeguards is to control the activities in nuclear facilities worldwide. These activities include the enrichment of ~(235)U. To identify enrichments above the maximum authorised level in commercial enrichment plants (usually 5% ~(235)U) swipe tests are performed and the ~(235)U enrichment is determined in the sampled uranium oxide particles. A method is described that allows to measure the ~(235)U content in small particles (around 1 urn in diameter) by the use of fission tracks. It is based on the fact that in uranium fuel, only ~(235)U atoms are fissile with thermal neutrons and contribute to the amount of fission tracks counted for individual particles. Standard uranium oxide particles with a defined diameter and isotopic composition were prepared and used to calibrate the method. Results show that the detection efficiency has a non-linear dependence on the number of fission tracks per particle. The enrichment in ~(235)U for single particles can be determined when good size measurements of the particles in a sample are available.
机译:核保障措施最重要的任务之一就是控制全世界核设施的活动。这些活动包括〜(235)U的富集。为了确定在商业浓缩厂中(通常为5%〜(235)U)的最大授权水平以上的浓缩,需进行滑动测试,并在采样的氧化铀颗粒中确定〜(235)U富集。描述了一种方法,该方法允许使用裂变径迹测量小颗粒(直径约1微米)中的〜(235)U含量。基于这样的事实,在铀燃料中,只有〜(235)U原子与热中子一起裂变,并有助于计算单个粒子的裂变径迹数量。制备具有确定的直径和同位素组成的标准铀氧化物颗粒,并将其用于校准该方法。结果表明,探测效率与每个粒子的裂变径迹数量呈非线性关系。当可以对样品中的粒子进行良好的尺寸测量时,可以确定单个粒子在〜(235)U中的富集程度。

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