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Long-term Geochemical Evolution Of The Near Field Repository: Insights From Reactive Transport Modelling And Experimental Evidences

机译:近场储层的长期地球化学演化:反应性运输模型和实验证据的启示

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摘要

minerals (pyrite and siderite). Changes in the groundwater composition lead to variations in the cation exchange occupancy, and dissolution-precipitation of carbonate minerals and gypsum. The most significant changes in the evolution of the system are predicted when ice-melting water, which is highly diluted and alkaline, enters into the system. In this case, the dissolution of carbonate minerals is enhanced, increasing pH in the bentonite pore water. Moreover, a rapid change in the population of exchange sites in the smectite is expected due to the replacement of Na for Ca.
机译:矿物(黄铁矿和菱铁矿)。地下水成分的变化会导致阳离子交换率的变化,以及碳酸盐矿物和石膏的溶解沉淀。当高度稀释和碱性的冰融水进入系统时,可以预测到系统演化中最重要的变化。在这种情况下,碳酸盐矿物的溶解得以增强,从而增加了膨润土孔隙水中的pH值。此外,由于用Na代替Ca,所以预期蒙脱石中交换位点的数量将快速变化。

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