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钚铍中子源的同位素表征及热中子通量测定

Isotopic characterization and thermal neutron flux determination of a PuBe neutron source.

作者信息

Purty Ravi Ankit, Prasad Shikha

机构信息

Nuclear Engineering and Technology Program, Radiation Detection Laboratory, Indian Institute of Technology Kanpur, Kanpur 208016, India.

出版信息

Appl Radiat Isot. 2017 Jul;125:144-149. doi: 10.1016/j.apradiso.2017.04.005. Epub 2017 Apr 5.

Abstract

The Indian Institute of Technology Kanpur (IIT Kanpur) possesses a PuBe neutron source facility with an initial activity of 5 Ci, dated September 1966 (nearly 50 years ago). An understanding of the present activity and the rate of its change will allow implementation of proper radiological safety procedures and future radiological safety planning. Knowing the absolute neutron flux will help us in future neutron activation studies. These details are also important to ensure proper security precautions. In our work, we attempt to identify the isotopic composition to determine the rate of change of the source and the absolute thermal neutron flux of plutonium beryllium (PuBe) sample at IIT Kanpur. We have used gamma-ray spectroscopy for determining the isotopic composition of the PuBe neutron source. After utilizing gamma-ray spectroscopy it is found that the source is composed of Pu and a small amount of Am is present as an impurity. The mass ratio of Am to Pu is found to be approximately 18.1µg/g with an uncertainty of 1.39%. Delayed gamma neutron activation analysis (DGNAA) is used to determine the thermal neutron flux of the same PuBe neutron source using copper, cobalt, nickel and cadmium samples. The average thermal neutron flux as calculated from DGNAA is approximately 1.27×10n/(cm-s) at 1cm above the PuBe neutron source.

摘要

印度坎普尔理工学院(IIT坎普尔)拥有一个初始活度为5居里的钚铍中子源设施,其日期为1966年9月(近50年前)。了解其当前活度及其变化速率将有助于实施适当的辐射安全程序和未来的辐射安全规划。知晓绝对中子通量将有助于我们未来的中子活化研究。这些细节对于确保适当的安全防范措施也很重要。在我们的工作中,我们试图确定同位素组成,以确定IIT坎普尔钚铍(PuBe)样品源的变化速率和绝对热中子通量。我们已使用伽马射线能谱法来确定PuBe中子源的同位素组成。利用伽马射线能谱法之后,发现该源由钚组成,并且存在少量的镅作为杂质。镅与钚的质量比约为18.1µg/g,不确定度为1.39%。使用铜、钴、镍和镉样品,通过延迟伽马中子活化分析(DGNAA)来确定同一PuBe中子源的热中子通量。根据DGNAA计算得出,在PuBe中子源上方1厘米处的平均热中子通量约为1.27×10n/(cm²·s)。 (注:原文中“1.27×10n/(cm-s)”似乎有误,根据语境推测可能是“1.27×10ⁿ/(cm²·s)”,译文按此修正后的内容翻译)

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