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Development of a prompt-gamma, neutron-activation analysis facility at the Texas AM University Nuclear Science Center

机译:在得克萨斯州A&M大学核科学中心开发了瞬发伽玛中子活化分析设施

摘要

A prompt-gamma, neutron-activation analysis facility earlier developed at the Nuclear Science Center of Texas A&M University could not be used successfully to analyze geologic samples due to high detection background, low neutron fluence rate and poor detection equipment . A systematic investigation into the performance capability of a prompt-gamma, neutron activation analysis facility was undertaken in this research project. The facility was reconstructed and used to obtain prompt-gamma spectra of chlorine and cadmium and from the spectra, the net peak area counts for the most intense prompt-gamma-ray energies were obtained. A theoretical model was developed which can predict the net peak area counts expected on these prompt-gamma-ray energies using the thermal neutron fluence rate at the sample position, the absolute efficiency of the detector, and the mass and partial gamma-ray production cross section data for the samples. The experimental and predicted results were compared to establish the performance capability of the reconstructed facility. Good agreements between experimental and predicted results were obtained for chlorine, but results from cadmium showed larger discrepancies due to self-shielding effects. Corrections for self-shielding effects were applied to results from cadmium and the experimental and predicted results were also in good agreement. The satisfactory results indicate that it is possible to implement the prompt-gamma, neutron-activation analysis technique at Beam Port #1 of the Nuclear Science Center Reactor. To be able to obtain excellent results from other samples, improvements in shielding materials to attain a lower detection background and a highly efficient detection system should be incorporated.
机译:得克萨斯州A&M大学核科学中心较早开发的一种瞬变伽马中子活化分析设备由于检测背景高,中子注量率低和检测设备差而无法成功地用于分析地质样品。在此研究项目中,对γ瞬发中子活化分析设备的性能进行了系统研究。对该设施进行了重建,并用于获取氯和镉的即时伽玛光谱,并从光谱中获得了最强的即时伽玛射线能量的净峰面积计数。建立了一个理论模型,该模型可以使用样品位置处的热中子注量率,探测器的绝对效率以及质量和部分伽马射线产生的交叉,来预测这些瞬发伽马射线能量上预期的净峰面积计数样品的截面数据。比较实验结果和预测结果,以建立重建设施的性能。氯的实验结果和预测结果之间达成了良好的一致性,但是镉的结果由于自屏蔽效应而显示出较大的差异。对自屏蔽效应的校正适用于镉的结果,实验结果和预测结果也很吻合。令人满意的结果表明,可以在核科学中心反应堆的束口1号处实施快速γ中子活化分析技术。为了能够从其他样品中获得优异的结果,应结合使用屏蔽材料进行改进以实现较低的检测背景和高效的检测系统。

著录项

  • 作者

    Inyang Otu Effiong;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 en_US
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