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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Intercomparison studies of Instrumental Neutron Activation Analysis using singles and gamma-gamma coincidence spectrometry for trace element determination in sodalime glass and sediment matrices and utilization of coincidence method for rapid automobile glass forensics
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Intercomparison studies of Instrumental Neutron Activation Analysis using singles and gamma-gamma coincidence spectrometry for trace element determination in sodalime glass and sediment matrices and utilization of coincidence method for rapid automobile glass forensics

机译:用单打和γ-gamma刚性光谱法测定仪器中子活化分析的仪器中子活化分析曲线玻璃和沉积物矩阵的微量元素测定及快速汽车玻璃取证的利用方法

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Instrumental Neutron Activation Analysis (INAA) using research reactor neutrons is a powerful nuclear analytical technique for multi-elemental determination in diverse matrices. In the present work, two different matrix samples namely sodalime glass and sediment samples have been analyzed by INAA using neutrons from research reactors at BARC. Samples were assayed by γ-γ coincidence spectrometry besides conventional (singles) counting using HPGe detector systems due to the presence of higher background from medium and long-lived activation products including~(24)Na. Accuracies of both the methods were evaluated by analyzing geological Certified Reference Material USGS CRM G2. INAA method with singles counting could give trace elemental concentrations of sixteen elements with about 10 days cooling period compared to nine elements by γ-γ coincidence method with a minimum of 4 days cooling period. Results of elemental concentrations are reported by both the methods along with experimental detection limits. Five automobile (sodalime) glass fragments were analyzed by INAA using γ-γ coincidence method for forensic applications utilizing seven trace elements of interest in grouping study. Concentrations of Sc and elemental concentration ratios like La/Sc indicated that five glasses fall into two major groups, which was confirmed by statistical cluster analysis. Though both the approaches of INAA are authentic for forensic applications for provenance study utilizing determined concentrations of trace elements, γ-γ coincidence INAA is helpful for giving results with less turnaround time of analysis.
机译:使用研究反应器中子的仪器中子激活分析(INAA)是一种功能强大的核分析技术,用于多种矩阵中的多元素测定。在本作工作中,通过在Barc的研究反应器中使用中子使用中子来分析两种不同的基质样品即钠钠玻璃和沉积物样品。除了包括培养基和长寿命的活化产品的较高背景,常规(单打)计数除了包括〜(24)Na的长寿命的活化产品的较高背景,常规(单打)计数除去γ-γ重合光谱法测定样品。通过分析地质认证的参考资料USGS CRM G2,评估两种方法的准确性。具有单打数值的INAA方法可以给予痕量元素浓度为约10天冷却时段,与γ-γ重合方法相比,至少4天冷却时间。两种方法都报告了元素浓度​​的结果以及实验检测限。通过使用γ-γ重合方法分析五种汽车(Sodalime)玻璃片段,用于使用七种微量兴趣的分组研究。 La / sc等SC和元素浓度比的浓度表明,通过统计聚类分析证实了五个眼镜落入两个主要群体。虽然InaA的方法都是真实的,但是利用所确定的微量元素浓度的出差研究,γ-γ巧合InaA有助于在较小的周转分析时间内提供结果。

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