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BO-ZnO-NaO-FeO玻璃体系γ射线衰减能力的实验研究

Experimental study of gamma-ray attenuation capability of BO-ZnO-NaO-FeO glass system.

作者信息

Elsafi Mohamed, Sayyed M I, Hanafy Taha A, More Chaitali V, Hedaya Ali

机构信息

Physics Department, Faculty of Science, Alexandria University, Alexandria, 21511, Egypt.

Department of Physics, Faculty of Science, Isra University, Amman, Jordan.

出版信息

Sci Rep. 2024 Aug 19;14(1):19141. doi: 10.1038/s41598-024-68941-3.

Abstract

In the present work, a glass system with developed composition consisting of BO, ZnO, NaO and FeO samples has been investigated. Glass samples were prepared using the melt quenching method and the density of the system was measured using Archimedes' principle. Spectroscopic analysis using a gamma source and a high-purity germanium detector at four energies of 0.0595, 0.6617, 1.173, and 1.333 MeV emitted from Am-241, Cs-137, and Co-60 were used to determine the attenuation parameters of present glass composites. The sample containing 45 BO + 10 NaO + 40 ZnO + 5 FeO (coded BNZF-4) had the highest mass attenuation coefficient (MAC) value at all the energies discussed compared to the other composites. Whoever, the BNZF-1 sample had the lowest value at all ranges of energies. The transmission factors (TF, %) of the manufactured samples were calculated, at 0.0595 MeV (TF, %) values are 32.6429 and 6.4612 for samples BNZF-1 and BNZF-4, respectively. The statistical results demonstrated significantly better to increase the ZnO concentration in the sample, where the percentage of zinc oxide inside the prepared glass samples has the following direction BNZF -4 > BNZF -3 > BNZF -2 > BNZF -1. The significance of this study is that transparent, environmentally harmless glass composites with relatively high density have been prepared that can be used as shielding materials against gamma rays, especially at low energies.

摘要

在本研究中,对一种由BO、ZnO、NaO和FeO样品组成的成分已确定的玻璃体系进行了研究。采用熔体淬火法制备玻璃样品,并利用阿基米德原理测量该体系的密度。使用由Am - 241、Cs - 137和Co - 60发射的0.0595、0.6617、1.173和1.333 MeV这四种能量的γ源和高纯锗探测器进行光谱分析,以确定当前玻璃复合材料的衰减参数。与其他复合材料相比,含有45BO + 10NaO + 40ZnO + 5FeO(编码为BNZF - 4)的样品在所有讨论的能量下具有最高的质量衰减系数(MAC)值。然而,BNZF - 1样品在所有能量范围内的值最低。计算了所制备样品的传输因子(TF,%),在0.0595 MeV时,BNZF - 1和BNZF - 4样品的(TF,%)值分别为32.6429和6.4612。统计结果表明,显著更好的是增加样品中ZnO的浓度,所制备玻璃样品中氧化锌的百分比具有以下顺序:BNZF - 4>BNZF - 3>BNZF - 2>BNZF - 1。本研究的意义在于制备出了具有相对较高密度的透明、环境无害的玻璃复合材料,其可作为低能γ射线的屏蔽材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c67c/11333472/7f9a6e56d127/41598_2024_68941_Fig1_HTML.jpg

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