P2O5–Pb3O4–ZnO–Li2CO3–CuO glasses and their radiation attenuation properties for shielding applications

IF 1.9 4区 材料科学 Q3 Materials Science
Jamila S. Alzahrani, Z. A. Alrowaili, Samia ben Ahmed, I. O. Olarinoye, Chahkrit Sriwunkum, M. S. Al-Buriahi
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引用次数: 3

Abstract

The use of lead as a radiation shield is becoming unpopular due to toxicity concern. Glasses are promising alternatives for eliminating this problem. This study is thus aimed at ascertaining the shielding efficacy of a newly developed glass system against gamma-ray, charged particle, fast, and thermal neutrons. The radiation shielding parameters of the novel PPZLC glass system were theoretically calculated and analysed. The chemical structure of the PPZLC glasses is 65P2O5–10Pb3O4–5ZnO–(20–x)Li2CO3xCuO where x = 0, 0.4, 0.8 and 1.0 mol% represents PPZLC1, PPZLC2, PPZLC3 and PPZLC4 glasses respectively. The gamma-ray mass attenuation coefficient MAC of the glasses for 0.1–10 MeV photons was calculated by FLUKA simulation and XCOM software. Calculated MAC values varied from 2.025 to 0.031, 2.027 to 0.032, 2.029 to 0.032 and 2.027 to 0.032 cm2/g in the order of PPZLC1-4. Analysis of other photon shielding parameters such as half value layer and mean free path showed that the increase in the concentration of CuO improved the shielding ability of the glasses against photons. Similarly, the trend of projected range of electrons, protons, α-particles and carbon ions showed the absorption capacity of charged particles in the glasses increased from PPZLC1-4. Furthermore, the fast neutron removal cross section increased considerably from 0.1006 to 0.1038 cm−1 for CuO molar concentration increase of 0–1.0 mol%. However, the reduction in the molar concentration of Li2CO3 led to the decline of absorption and total cross section for thermal neutrons in the glasses. Comparing the photon and neutron absorbing capacity of the PPZLC1-4 glasses with common shielding materials, it was observed that the present glasses have potential to function well in radiation absorbing or collimating applications. They can thus be recommended for use as radiation shields in medical and industrial application of photons coupled with fast neutrons, storage for radioactive materials and other related functions.

屏蔽用P2O5-Pb3O4-ZnO-Li2CO3-CuO玻璃及其辐射衰减性能
由于对毒性的担忧,铅作为辐射屏蔽物的使用越来越不受欢迎。眼镜是消除这个问题的有希望的替代品。因此,本研究旨在确定新开发的玻璃系统对伽马射线、带电粒子、快中子和热中子的屏蔽效果。对新型PPZLC玻璃系统的辐射屏蔽参数进行了理论计算和分析。PPZLC玻璃的化学结构为65P2O5-10Pb3O4-5ZnO - (20-x) Li2CO3-xCuO,其中x = 0、0.4、0.8和1.0 mol%分别代表PPZLC1、PPZLC2、PPZLC3和PPZLC4玻璃。利用FLUKA模拟和XCOM软件计算了0.1 ~ 10 MeV光子下玻璃的伽马射线质量衰减系数MAC。计算得到的MAC值依次为:2.025 ~ 0.031、2.027 ~ 0.032、2.029 ~ 0.032、2.027 ~ 0.032 cm2/g。对半值层和平均自由程等其他光子屏蔽参数的分析表明,CuO浓度的增加提高了玻璃对光子的屏蔽能力。同样,电子、质子、α-粒子和碳离子的投影范围的变化趋势表明,玻璃中带电粒子的吸收能力从PPZLC1-4增加。此外,当CuO摩尔浓度增加0-1.0 mol%时,快中子去除截面从0.1006增加到0.1038 cm−1。然而,Li2CO3摩尔浓度的降低导致玻璃中热中子的吸收和总截面的下降。将PPZLC1-4玻璃与普通屏蔽材料的光子和中子吸收能力进行比较,发现该玻璃具有良好的辐射吸收和准直应用潜力。因此,它们可被推荐用于光子与快中子耦合的医疗和工业应用中的辐射屏蔽、放射性物质的储存和其他相关功能。
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来源期刊
Journal of the Australian Ceramic Society
Journal of the Australian Ceramic Society MATERIALS SCIENCE, CERAMICS-
CiteScore
3.20
自引率
5.30%
发文量
1
审稿时长
>12 weeks
期刊介绍: Publishes high quality research and technical papers in all areas of ceramic and related materials Spans the broad and growing fields of ceramic technology, material science and bioceramics Chronicles new advances in ceramic materials, manufacturing processes and applications Journal of the Australian Ceramic Society since 1965 Professional language editing service is available through our affiliates Nature Research Editing Service and American Journal Experts at the author''s cost and does not guarantee that the manuscript will be reviewed or accepted
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