Özdoğan Hasan, Üncü Yiğit Ali, Akman Ferdi, Polat Hasan, Kaçal Mustafa Recep
Department of Medical Imaging Techniques, Vocational School of Health Services, Antalya Bilim University, 07190 Antalya, Turkey.
Department of Biomedical Equipment Technology, Vocational School of Technical Sciences, Akdeniz University, 07070 Antalya, Turkey.
Polymers (Basel). 2024 Nov 27;16(23):3324. doi: 10.3390/polym16233324.
Ionizing radiation plays an essential role across various fields but also poses significant health risks, requiring effective shielding solutions. This study focuses on the photon shielding properties of PbO-reinforced composites, specifically PbO-0, PbO-2, PbO-4, PbO-6, PbO-8, and PbO-10, through experimental measurements of photon energies ranging from 59.5 keV to 1408.0 keV. The measurements were taken using an HPGe detector. Experimental results were compared to theoretical calculations. Among the tested composites, PbO-10, which contains the highest concentration of lead oxide (PbO), provided the most effective radiation shielding. This sample demonstrated superior mass and linear attenuation coefficients, offering excellent protection at low photon energies. Furthermore, PbO-10 exhibited the lowest half-value layer (HVL) and tenth-value layer (TVL) values, indicating its efficiency in reducing radiation intensity with thinner material layers. It was determined that the experimental TVL results for PbO-O, PbO-2, PbO-4, PbO-6, PbO-8, and PbO-10 at 59.5 keV photon energy were 9.95, 5.98, 4.77, 3.67, 3.22, and 2.71 cm, respectively. With these outstanding attenuation capabilities, PbO-10 is deemed highly suitable for use in medical, industrial, and radiation-heavy environments. In summary, this research emphasizes the effectiveness of PbO-reinforced composites in gamma-ray shielding, with PbO-10 emerging as the top performer, demonstrating great potential for applications that require durable and efficient radiation protection.
电离辐射在各个领域都起着至关重要的作用,但也带来了重大的健康风险,因此需要有效的屏蔽解决方案。本研究通过对59.5 keV至1408.0 keV光子能量的实验测量,重点研究了PbO增强复合材料(具体为PbO-0、PbO-2、PbO-4、PbO-6、PbO-8和PbO-10)的光子屏蔽特性。测量使用的是HPGe探测器。实验结果与理论计算进行了比较。在测试的复合材料中,氧化铅(PbO)浓度最高的PbO-10提供了最有效的辐射屏蔽。该样品表现出优异的质量衰减系数和线性衰减系数,在低光子能量下提供了出色的防护。此外,PbO-10的半价层(HVL)和十分之一值层(TVL)值最低,表明其能用更薄的材料层降低辐射强度。已确定,在59.5 keV光子能量下,PbO-0、PbO-2、PbO-4、PbO-6、PbO-8和PbO-10的实验TVL结果分别为9.95、5.98、4.77、3.67、3.22和2.71 cm。凭借这些出色的衰减能力,PbO-10被认为非常适合用于医疗、工业和辐射强度大的环境。总之,本研究强调了PbO增强复合材料在伽马射线屏蔽方面的有效性,其中PbO-10表现最佳,在需要持久高效辐射防护的应用中显示出巨大潜力。