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Investigation on gamma-ray shielding and permeability of clay-steel slag mixture

机译:粘土-钢渣混合料的γ射线屏蔽和渗透性研究

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Radiation shielding around low-level radioactive waste disposals is one of the most important issues in environmental protection and sustainable development. Using a suitable cover layer to surround and cap these waste disposals for isolation is essential. Clay is usually used for covering these disposals because it is relatively impermeable and a natural and eco-friendly material. In this research, the effect of adding steel slag to bentonite clay as an industrial waste, relatively cheap and available material, is investigated to improve its radiation shielding performance. In addition, the effect of increasing the steel slag to bentonite on the hydraulic permeability coefficient has been examined. Energy-dispersive spectroscopy (EDS) and scanning electron microscopy (SEM) tests have been conducted for chemical and microstructure analyses. This study has been carried out using both experimental and simulation methods. In the experimental part, the linear attenuation coefficient is measured for pure bentonite clay and bentonite clay mixed with 10, 20, 30 and 40% of steel slag. The permeability coefficient has been measured for target mixtures of bentonite clay and steel slag. Results show that adding steel slag to bentonite clay can improve the radiation shielding performance, whereas the mixture will be more permeable. The results also indicate that by adding 40% steel slag, radiation shielding coefficient will considerably improve compared to bentonite clay, while the permeability factor remains under the maximum allowable value for the landfill cover layer. Respecting the environmental and economic considerations, employing the mixture of bentonite clay and 40% steel slag can be a suitable alternative as a radiation shielding material for capping the low-level radioactive waste disposal.
机译:低放射性废物处置周围的辐射屏蔽是环境保护和可持续发展中最重要的问题之一。必须使用合适的覆盖层围绕并覆盖这些废物处理以隔离。粘土通常用于覆盖这些垃圾,因为它相对不透水并且是天然且环保的材料。在这项研究中,研究了将钢渣添加到膨润土中作为工业废料(相对便宜和可用的材料)的效果,以提高其辐射屏蔽性能。另外,已经研究了增加钢渣到膨润土对水力渗透系数的影响。已经进行了能量色散光谱(EDS)和扫描电子显微镜(SEM)测试,以进行化学和微观结构分析。这项研究已使用实验和模拟方法进行。在实验部分,测量了纯膨润土和掺有10、20、30和40%钢渣的膨润土的线性衰减系数。已针对膨润土和钢渣的目标混合物测量了渗透系数。结果表明,将钢渣添加到膨润土中可以改善辐射屏蔽性能,而混合物的渗透性更好。结果还表明,通过添加40%的钢渣,与膨润土相比,辐射屏蔽系数将大大提高,而渗透率仍保持在垃圾填埋覆盖层的最大允许值以下。考虑到环境和经济方面的考虑,采用膨润土和40%的钢渣的混合物作为屏蔽低放射性废物处置的辐射屏蔽材料可能是合适的选择。

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