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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Study of environment friendly bismuth incorporated lithium borate glass system for structural, gamma-ray and fast neutron shielding properties
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Study of environment friendly bismuth incorporated lithium borate glass system for structural, gamma-ray and fast neutron shielding properties

机译:对环境友好型铋合并结构,伽马射线和快中子屏蔽性能的锂硼酸锂玻璃系统

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The present work is aimed at incorporating the heavy metal oxide 'bismuth oxide' in lithium-borate glass system and studying its effect on the glass structure, durability, gamma-ray and neutron shielding ability. The density, XRD, Raman, FTIR. and UV-Visible spectroscopic techniques assisted in understanding the structure of ternary bismuth lithium-borate glass system. It has been found that the glass samples are of amorphous nature and structure is mainly built up of BO4, BO3, BiO6, BiO3 units and non-bridging oxygens (NBOs). Bismuth-incorporated glasses possess improved water resistance ability. The gamma-ray shielding ability was evaluated from mass attenuation coefficient, mean free path, tenth value layer and effective atomic number and it was found to be improved with the addition of bismuth oxide content. The exposure build up factor was also computed to account for the secondary photons and multiple Compton scattering. The removal cross section for fast neutrons (Sigma(R)) was also evaluated to study the neutron shielding ability of our prepared glasses. The glasses were also compared with barite concrete and commercial shielding glass RS 360 for gamma-rays and, with H2O, graphite, ordinary and hematite-serpentine concrete for checking neutrons shielding ability. It was observed that our glasses have better radiation shielding properties than the compared materials. In the light of these obtained results, it was conduded that the prepared bismuth lithium-borate glass system can be utilised for radiation shielding applications. (C) 2019 Elsevier B.V. All rights reserved.
机译:本作本作的目的是在锂硼酸锂玻璃系统中掺入重金属氧化物的氧化铋',并研究其对玻璃结构,耐久性,伽马射线和中子屏蔽能力的影响。密度,XRD,拉曼,FTIR。和UV可见的光谱技术辅助了解三元硼酸锂硼酸盐玻璃系统的结构。已经发现,玻璃样品具有非晶性,结构主要由BO4,BO3,BiO6,Bio3单元和非桥接氧(NBOS)构建。铋掺入的眼镜具有改善的耐水性。从质量衰减系数,平均自由路径,第十个值层和有效原子数评价γ射线屏蔽能力,并且发现添加氧化铋含量的改善。还计算曝光积分因子以考虑二次光子和多个康普顿散射。还评估了快速中子的去除横截面(Sigma(R)),以研究我们制备的眼镜的中子屏蔽能力。还将眼镜与用于γ射线的重晶石混凝土和商业屏蔽玻璃Rs 360进行比较,以及H2O,石墨,普通和赤藓肽混凝土,用于检查中子屏蔽能力。观察到我们的眼镜比比较材料具有更好的辐射屏蔽性能。鉴于这些得到的结果,可以利用制备的铋锂 - 硼酸锂玻璃系统用于辐射屏蔽应用。 (c)2019 Elsevier B.v.保留所有权利。

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