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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Comparative analysis of nuclear waste solidification performance models: Spent ion exchanger-cement based wasteforms
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Comparative analysis of nuclear waste solidification performance models: Spent ion exchanger-cement based wasteforms

机译:核废料凝固性能模型的比较分析:废离子交换机基水泥的废物

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Solidification performance for cement based radioactive wasteforms was investigated and linked to the hydraulic performance using mechanistic and empirical models. Within this context, the short-term developments of the compressive strength, porosity, and permeability of cement based matrices of varying water content were assessed. For matrices of low-water content, diffusion reaction is the dominant solidification mechanism due to super-saturation of CSH phases. As the water content increases, nucleation and growth reaction controls the process. The nature of the immobilization of inorganic ion exchangers and polymer modification in cement based matrices and its effect on the relative change in the compressive strength and permeability were investigated. The reductions in the solidification performance for cement-inorganic exchanger wasteforms were attributed to the excess amount of Ettringite in case of alumina exchangers and to the reduction in the hydrated phases formation for the rest of the inorganic exchangers. The permeability of the alumina-cement wasteform is fairly constant up to 16 % loading, whereas this behavior is noted up to 10 % loading of the rest of the inorganic exchanger and absent for organic exchangers-modified cement wasteforms. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:使用机械和经验模型研究了基于水泥基于放射性废物的凝固性能和与液压性能相关联。在这种情况下,评估抗压强度,孔隙率和不同水含量的水泥基基质渗透性的短期发展。对于低含水量的基质,扩散反应是由于CSH相的超饱和度引起的显性凝固机制。随着水含量的增加,成核和生长反应控制该过程。研究了水泥基质中无机离子交换剂和聚合物改性的固定性质及其对抗压强度和渗透性相对变化的影响。在氧化铝交换剂的情况下归因于水泥 - 无机交换器废料的固化性能的降低归因于氧化铝交换剂的过量的Ettringite,并在其余的无机交换剂中减少水合阶段形成。氧化铝 - 水泥废物的渗透率相当恒定达到16%的载荷,而这种行为达到了剩余的无机交换剂的10%,并且没有用于有机交换剂改性的水泥废物。 (c)2020化学工程师机构。 elsevier b.v出版。保留所有权利。

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