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Exploring innovative solutions for aged concrete utilization: treatment of liquid radioactive waste

机译:探索老化混凝土利用的创新解决方案:液体放射性废物的处理

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In this study, the applicability of waste concrete as a sorbent material for the liquid radioactive waste management was considered. The sample was properly characterized in terms of mineralogical and surface composition, particles morphology, radioactivity, and of the behavior in aqueous solutions at different solid/liquid ratios and pH values. Since radioactive isotopes of Sr, Co and Ni are significant components of the liquid radioactive waste, sequestering of their ions from aqueous media was studied in single and multi-component batch sorption systems. The capacity of waste concrete decreased in the order Ni2+ (0.54 mmol/g) Co2+ (0.32 mmol/g) Sr2+ (0.25 mmol/g). Concurrent sorption was analyzed using Simplex Centroid Experimental Design and the coefficients that correspond to the linear and interaction terms were obtained using a special cubic model. The presented results demonstrate the potential of waste concrete in the radioactive waste treatment and conditioning, due to its high sorption capacity and compatibility with the solidification matrices.
机译:在这项研究中,考虑了废弃混凝土作为吸附剂材料在液体放射性废物管理中的适用性。根据矿物学和表面组成,颗粒形态,放射性以及在不同固/液比和pH值下在水溶液中的行为对样品进行了适当的表征。由于Sr,Co和Ni的放射性同位素是液态放射性废物的重要组成部分,因此在单组分和多组分分批吸附系统中研究了从水介质中螯合离子的问题。废混凝土的容量按Ni2 +(0.54 mmol / g)> Co2 +(0.32 mmol / g)> Sr2 +(0.25 mmol / g)的顺序降低。使用单纯形质心实验设计分析并发吸附,并使用特殊的立方模型获得与线性和相互作用项相对应的系数。呈现的结果证明了废混凝土在放射性废料处理和调理中的潜力,因为它具有高吸附能力和与固化基质的相容性。

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