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Coupled modeling of cement/claystone interactions and radionuclide migration

机译:水泥/粘土相互作用和放射性核素迁移的耦合模型

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The interactions between cement and a clayey host-rock of an underground repository for intermediate-level radioactive waste are studied with the reactive transport code HYTEC for supporting performance assessment. Care is taken in using relevant time scales (100,000 years) and dimensions. Based on a literature review, three hypotheses are considered with respect to the mineralogical composition of the claystone and the neo-formed phases. In the long term, the pH is buffered for all hypotheses and important mineral transformations occur both in cement and the host-rock. The destruction of the primary minerals is localized close to the cement/claystone interface and is characterized by the precipitation of secondary phases with retention properties (illite, zeolite). However, beyond the zone of intense mineral transformations, the pore water chemistry is also disturbed over a dozen meters due to an attenuated but continuous flux of hydroxyl, potassium and calcium ions. Four interdependent mechanisms control the profile in the whole system: diffusion of the alkaline plume, mineralogical buffering, ion exchange and clogging of the pore space at the cement/claystone interface. The migration of a selected group of radionuclides (Cs, Ra, Tc and U) is explicitly integrated in the simulations of the strongly coupled system. Theoretical profiles of distribution coefficient (Kd) and solubility limit values are derived from the simulations, and their sensitivity with respect to the system evolution is estimated.
机译:利用反应性运输规程HYTEC研究了用于中级放射性废物的地下储存库中水泥与黏土质基岩之间的相互作用,以支持性能评估。使用相关的时标(100,000年)和尺寸时要格外小心。根据文献综述,关于粘土岩和新形成的相的矿物学组成考虑了三个假设。从长远来看,pH值可以缓冲所有假设,并且重要的矿物转化同时发生在水泥和主体岩石中。主要矿物的破坏位于水泥/粘土岩界面附近,其特征是具有保留特性的次生相(伊利石,沸石)的沉淀。但是,在矿物质转化剧烈的区域之外,由于羟基,钾和钙离子的衰减但连续流动,十几米内的孔隙水化学也受到干扰。四个相互依赖的机制控制着整个系统的分布:碱性羽流的扩散,矿物学缓冲,离子交换和水泥/粘土岩界面处孔隙的堵塞。选定的一组放射性核素(Cs,Ra,Tc和U)的迁移明确集成在强耦合系统的模拟中。通过仿真得出分布系数(Kd)和溶解度极限值的理论曲线,并估计它们对系统演化的敏感性。

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