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A coupled non-isothermal reactive transport model for long-term geochemical evolution of a HLW repository in clay

机译:粘土中HLW储层长期地球化学演化的耦合非等温反应输运模型

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摘要

A numerical model of coupled saturated/ unsaturated water flow, heat transfer and multi-component reactive solute transport is presented to evaluate the long-term geochemical evolution in bentonite, concrete and clay formation for a potential geological radioactive waste repository. Changes in formation porosity caused by mineral dissolution/precipitation reactions are taken into account. Simulations were carried out with a general-purpose multicomponent reactive transport code, CORE~(2D) V4. Numerical results show that pH in the bentonite porewater can vary from neutral to up to 13 over a time scale of 1 Ma although dissolution of silica minerals and precipitation of secondary calcium silicate hydrate (CSH) minerals in bentonite buffer the effect of the hyperalkaline plume. Mineral precipitation reduces the volume of pore space in bentonite close to the bentonite-concrete interface due to the precipitation of CSH minerals. Model results indicate that bentonite porosity decreases less than 25%. The hyperalkaline plume from the concrete only extends to a distance of 0.7 m in the clay formation over the time range of 1 Ma.
机译:提出了一个耦合的饱和/不饱和水流,传热和多组分反应性溶质运移的数值模型,以评估潜在地质放射性废料库在膨润土,混凝土和粘土中的长期地球化学演化。考虑由矿物溶解/沉淀反应引起的地层孔隙度变化。使用通用的多组分反应性传输代码CORE〜(2D)V4进行了仿真。数值结果表明,膨润土孔隙水中的pH值在1 Ma的时间范围内可以从中性变化到最高13,尽管二氧化硅矿物的溶解和膨润土中次生硅酸钙水合物(CSH)矿物的沉淀缓冲了高碱性羽流的作用。由于CSH矿物的沉淀,矿物沉淀减少了膨润土中靠近膨润土-混凝土界面的孔隙空间。模型结果表明,膨润土孔隙率降低小于25%。在1 Ma的时间范围内,来自混凝土的高碱性羽流仅在粘土地层中延伸至0.7 m的距离。

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