Evaluation of gamma-ray buildup factors for some waste paper and natural rubber composites

IF 0.4 Q4 PHYSICS, NUCLEAR
M. A. El-Sarraf, A. El-Sayed Abdo
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引用次数: 1

Abstract

In this work, four waste paper composites were studied in terms of several photon interaction parameters over the energy region from 0.015 to 15.0 MeV. The waste paper and natural rubber (WP/NR) composites of different densities ranging from ρ = 0.894 to 1.16 gm⋅cm-3 were used for shielding radioactive rubble at different time period stages. Some additives were also used including high-abrasion furnace black, paraffin wax, B4C, as well as magnetite. The deduced parameters of photon interaction: equivalent atomic number Zeq, exposure buildup factor and energy absorption buildup factor have been studied as a function of incident photon energy, WP/NR elemental composition, and for penetration depths, up to 40 mean free path. The Zeq numbers have shown slight variation over the selected incident energy range and buildup factors were found to be modest at low and high photon energy meanwhile their values increase widely over the intermediate energy region. In addition, kerma relative to air for photon energies from 1 to 20 MeV were computed and show dependence upon equivalent atomic numbers. In this work, it was clear that filled samples offer better shielding capabilities than unfilled ones. The obtained data could be useful for radiation physicists and scientists in estimating the γ-irradiation received after applying such shields.
某些废纸和天然橡胶复合材料的射线积累因子评价
本文研究了4种废纸复合材料在0.015 ~ 15.0 MeV能量范围内的光子相互作用参数。在ρ = 0.894 ~ 1.16 gm⋅cm-3范围内,采用不同密度的废纸与天然橡胶(WP/NR)复合材料,在不同时间段对放射性碎石进行屏蔽。还使用了高磨耗炉黑、石蜡、B4C和磁铁矿等添加剂。研究了光子相互作用的等效原子序数Zeq、暴露累积因子和能量吸收累积因子与入射光子能量、WP/NR元素组成和穿透深度(平均自由程可达40)的关系。Zeq值在选定的入射能量范围内变化不大,在低光子和高光子能量范围内积聚因子不大,而在中间能量范围内积聚因子的值则大幅度增加。此外,计算了光子能量从1到20 MeV的相对于空气的kerma,并显示出与等效原子序数的依赖关系。在这项工作中,很明显,填充的样品比未填充的样品提供更好的屏蔽能力。所获得的数据可用于辐射物理学家和科学家估计施加这种屏蔽后所受到的γ辐照。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.70
自引率
33.30%
发文量
10
审稿时长
19 weeks
期刊介绍: The journal Nuclear Physics and Atomic Energy presents the publications on Nuclear Physics, Atomic Energy, Radiation Physics, Radioecology, Engineering and Methods of Experiment. The journal includes peer-reviewed articles which are completed works containing new results of theoretical and experimental researches and are of interest for the scientists, postgraduate students, engineers and for the senior students.
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