234mPa放射性核素发射伽马射线法测定238U含量

IF 0.2 Q4 INSTRUMENTS & INSTRUMENTATION
A. Khruschinski, S. Kutsen, A. Zhukouski, Naoyuki Sugai, H. Sugai, Michinori Mogi
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引用次数: 0

摘要

放射性核素238U是核电工程、地质勘探、土壤和建筑原料放射性污染控制中必须控制的重要放射性元素之一。控制238U的最佳方法是使用234mPa放射性核素,由于其寿命短(≈1.2 min),即使样品中的长期平衡受到干扰,其活度也与238U的活度明确相关studyРossibility使用234mPa核素伽马辐射在含有天然放射性核素的介质中用闪烁检测器测定238U,并使用最简单的例子进行了研究和演示。所提出的测定238U含量的算法是基于探测器对234mPa放射性核素在其1001 keV能量线上的辐射响应的蒙特卡罗模拟和对实验谱的后续处理,包括信号的维纳滤波。该方法可以在存在天然放射性核素的连续均匀介质中测定238U的含量。238U含量测定算法包括几个主要步骤。基于维纳算法的滤波允许选择频谱中变化缓慢的部分。蒙特卡罗模拟的结果使得在光谱的有限信息区域内确定检测效率成为可能,其中包括来自234mPa核素的1001 keV峰值,这是放射性核素234的衰变产物,以及来自232Th衰变链的干扰放射性核素的峰值。这部分光谱不包含任何其他来自天然放射性核素的伽马射线——钍和铀链的衰变产物。在典型浓度为234的介质中,所研究的光谱区域中的这两个峰可以相互分离。对贫铀金属活度的测定结果进行分析,结果表明,该方法可以在3 ~ 5%的不确定度范围内测定238U的含量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of 238U Content by Gamma Radiation Emitting from 234mPa Radionuclide
Radionuclide 238U is one of the most important radioactive elements that must be controlled in nuclear power engineering, geological exploration, control of radioactive contamination of soils and raw materials used in construction. The most optimal way to control 238U is to use the 234mPa radionuclide, the activity of which, due to its short lifetime (≈ 1.2 min), is unambiguously related to the activity of 238U even if the secular equilibrium is disturbed in the sample under studyРossibility of use of the 234mPa nuclide gamma radiation to determine 238U with a scintillation detector in a medium containing natural radionuclides is investigated and demonstrated using the simplest examples. The proposed algorithm for determining of the 238U content is based on the Monte Carlo simulation of the detector response to the radiation of the 234mPa radionuclide at its 1001 keV energy line and subsequent processing of the experimental spectrum, including the Wiener filtering of the signal. This method makes it possible to determine the content of 238U in a continuous homogeneous medium while presence of natural radionuclides in it.The algorithm for determining of 238U content includes several main steps. Filtering based on the Wiener algorithm allows selecting a slowly changing part of the spectrum. Results of Monte Carlo simulations make it possible to determine the detection efficiency in a limited informative region of the spectrum, which includes, along with the 1001 keV peak from the 234mPa nuclide, which is a decay product of the radionuclide 234Th, and the peak of an interfering radionuclide from the decay chain of 232Th. This part of the spectrum does not contain any other lines of gamma radiation from natural radionuclides – decay products of both thorium and uranium chains. These two peaks in the spectral region under study can be separated from each other in a medium with a typical concentration of 234Th.Analysis of results of the activity of depleted uranium metal measuring in accordance with the proposed algorithm shows the possibility of determining of 238U content with an uncertainty of 3–5 %.
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来源期刊
Devices and Methods of Measurements
Devices and Methods of Measurements INSTRUMENTS & INSTRUMENTATION-
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25.00%
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