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Investigating the effect of basalt fiber additive on the performance of clay barriers for radioactive waste disposals

机译:研究玄武岩纤维添加剂对放射性废物处理粘土屏障性能的影响

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摘要

Radioactive materials are widely used in mining, manufacturing, medicine, and agricultural processes. The waste products from these materials are hazardous and should be appropriately dumped. As a result, a proper radiation shielding barrier is required to avoid the contamination of the surrounding environment. Clay soil is an efficient and eco-friendly radiation shielding material, which is commonly used to cap the hazardous and radioactive landfills. In this research, the effects of basalt fiber additive in four percentages, including 0.5, 1, 2, and 5 on the bentonite clay radiation shielding performance, were investigated using experimental and simulation methods. Also, the permeability of the mixtures is controlled to be in the acceptable range as a vital parameter for radioactive disposal barriers. Chemical and microstructure analyses were conducted on the utilized material, using energy-dispersive X-ray spectroscopy (EDX) and scanning electron microscopy (SEM). Linear attenuation coefficient (mu), representing the material radiation shielding performance, was evaluated using the HPGe spectrometer detector, MCNP simulation code, and XCOM web program on the three commonly used gamma-ray energy levels of Cs-137 (661.6 keV) and Co-60 (1173.5 and 1332.5 keV). An acceptable agreement was observed between experimental and simulation results, revealing that adding basalt fiber improves the shielding performance due to a higher linear attenuation coefficient (mu), where 2% of basalt fiber leads to the highest values of 12.3 m(-1), 10.14 m(-1), and 8.5 m(-1) obtained for 661.6 keV, 1173.2 keV, and 1332.5 keV energy levels, respectively. The results concluded that, due to radiation shielding performance, workability, and permeability limitations, the 2% basalt-bentonite mixture could be a new candidate covering low-level radioactive waste disposal.
机译:放射性物质广泛用于采矿,制造,医药和农业过程。这些材料的废物是危险的,应该适当倾倒。结果,需要适当的辐射屏蔽屏障来避免周围环境的污染。粘土土是一种高效且环保的辐射屏蔽材料,通常用于覆盖危险和放射性垃圾填埋场。在本研究中,使用实验和模拟方法研究了四个百分比,包括0.5,1,2和5的玄武岩粘土辐射屏蔽性能的效果。而且,将混合物的渗透率控制为可接受的范围,作为放射性处理屏障的重要参数。使用能量分散X射线光谱(EDX)和扫描电子显微镜(SEM)在利用材料上进行化学和微观结构分析。代表材料辐射屏蔽性能的线性衰减系数(mu)是使用CS-137(661.6 kev)和Co的三种常用伽马光线能级的三种常用的伽马射线能级评估材料辐射屏蔽性能。 -60(1173.5和1332.5 kev)。在实验和仿真结果之间观察到可接受的一致性,揭示添加玄武岩纤维引起的屏蔽性能由于较高的线性衰减系数(MU),其中2%的玄武岩纤维导致最高值12.3米(-1), 10.14 m(-1)和8.5 m(-1)分别获得661.6 keV,1173.2 keV和1332.5keV能量水平。结果得出结论,由于辐射屏蔽性能,可加工性和渗透性限制,2%玄武岩 - 膨润土混合物可以是覆盖低水平放射性废物处理的新候选者。

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