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用于伽马射线屏蔽应用的纳米颗粒掺杂重质砂浆的机械、形态、热学及衰减特性

Mechanical, Morphological, Thermal and the Attenuation Properties of Heavy Mortars Doped with Nanoparticles for Gamma-Ray Shielding Applications.

作者信息

Alresheedi Mohammed Thamer, Elsafi Mohamed, Aladadi Yosef T, Abas Ahmad Fauzi, Ganam Abdullrahman Bin, Sayyed M I, Mahdi Mohd Adzir

机构信息

Department of Electrical Engineering, King Saud University, P.O. Box 800, Riyadh 11421, Saudi Arabia.

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

出版信息

Materials (Basel). 2023 Apr 20;16(8):3255. doi: 10.3390/ma16083255.

Abstract

This study aimed to develop a mortar composite with improved gamma ray shielding properties using WO and BiO nanoparticles, as well as granite residue as a partial replacement of sand. The physical properties and effects of sand substitution and nanoparticle addition on the mortar composite were analyzed. TEM analysis confirmed the size of BiO and WO NPs to be 40 ± 5 nm and 35 ± 2 nm, respectively. SEM images showed that increasing the percentage of granite residues and nanoparticles improved the homogeneity of the mixture and decreased the percentage of voids. TGA analysis indicated that the thermal properties of the material improved with the increase in nanoparticles, without decreasing the material weight at higher temperatures. The linear attenuation coefficients were reported and we found that the LAC value at 0.06 MeV increases by a factor of 2.47 when adding BiO, while it is enhanced by a factor of 1.12 at 0.662 MeV. From the LAC data, the incorporation of BiO nanoparticles can greatly affect the LAC at low energies, and still have a small but noticeable effect at higher energies. The addition of BiO nanoparticles into the mortars led to a decrease in the half value layer, resulting in excellent shielding properties against gamma rays. The mean free path of the mortars was found to increase with increasing photon energy, but the addition of BiO led to a decrease in MFP and better attenuation, making the CGN-20 mortar the most ideal in terms of shielding ability among the prepared mortars. Our findings on the improved gamma ray shielding properties of the developed mortar composite have promising implications for radiation shielding applications and granite waste recycling.

摘要

本研究旨在利用WO和BiO纳米颗粒以及花岗岩残渣作为砂的部分替代品,开发一种具有改进的伽马射线屏蔽性能的砂浆复合材料。分析了砂替代和纳米颗粒添加对砂浆复合材料物理性能的影响。透射电子显微镜(TEM)分析证实,BiO和WO纳米颗粒的尺寸分别为40±5纳米和35±2纳米。扫描电子显微镜(SEM)图像显示,增加花岗岩残渣和纳米颗粒的百分比可提高混合物的均匀性并降低孔隙率。热重分析(TGA)表明,材料的热性能随着纳米颗粒的增加而改善,且在较高温度下材料重量并未降低。报告了线性衰减系数,我们发现添加BiO时,0.06 MeV处的线性衰减系数(LAC)值增加了2.47倍,而在0.662 MeV处则提高了1.12倍。根据LAC数据,BiO纳米颗粒的掺入在低能量下会极大地影响LAC,而在高能量下仍有微小但明显的影响。向砂浆中添加BiO纳米颗粒导致半值层减小,从而产生了优异的伽马射线屏蔽性能。发现砂浆的平均自由程随光子能量增加而增加,但添加BiO导致平均自由程减小且衰减更好,使得CGN - 20砂浆在所制备的砂浆中屏蔽能力方面最为理想。我们关于所开发的砂浆复合材料改进的伽马射线屏蔽性能的研究结果对辐射屏蔽应用和花岗岩废料回收具有广阔的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e99a/10144112/ca69b640f0db/materials-16-03255-g001.jpg

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