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A hydro-geochemical analysis of the saturation process with salt water of a bentonite crushed granite rock mixture in an engineered nuclear barrier

机译:工程核屏障中膨润土碎花岗岩混合物的盐水饱和过程的水文地球化学分析

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A MX-80 sodium beatonite crushed granite rock mixture is being saturated in the Aspo Hard Rock Laboratory managed by SO (the Swedish Company of nuclear waste management) as part of the "Backfill and Plug Test Project". The Aspo Hard Rock Laboratory is placed in the Swedish Island of Aspo, an underground full-scale laboratory where different testing construction procedures and handling techniques are being studied. The groundwater of Aspo has a variable salt concentration according to the zone considered. The added water during the mixing process of both materials had an average salt concentration of 6 g/L. However, backfill is being saturated with salt water containing higher salt content (up to 16 g/L, 50/50 of Nad and CaCl_2 by mass) to speed up the saturation process. The mixture swelling capacity is small due to the low backfill bentonite content, but its activity is still large if compared with natural clayey soils. A coupled hydro-chemical approach was used to simulate the backfill hydration process, comparing the results with in situ measurements. An intrinsic permeability law, depending on salt concentration in the liquid phase, was incorporated into the model. The retention curve was also determined taking into account the effect of the chemical species on backfill behaviour. The simulation of the saturation process shows the importance of studying these problems with a HC (hydro-chemical) formulation, especially if long term behaviour of such mixtures is going to be reproduced.
机译:作为“回填和堵漏测试项目”的一部分,由SO(瑞典核废料管理公司)管理的Aspo硬岩实验室正在浸透MX-80钠膨润土碎石花岗岩混合物。 Aspo Hard Rock实验室位于瑞典的Aspo岛,这是一个地下全面实验室,正在研究不同的测试施工程序和处理技术。 Aspo的地下水根据所考虑的区域具有可变的盐浓度。在两种材料的混合过程中添加的水的平均盐浓度为6 g / L。但是,回填被含盐量较高的盐水(按质量计高达16 g / L,Nad和CaCl_2的50/50)饱和,以加快饱和过程。由于回填膨润土含量低,混合物的溶胀能力很小,但与天然粘土相比,它的活性仍然很大。使用耦合水化学方法来模拟回填水化过程,将结果与原位测量结果进行比较。根据液相中的盐浓度,将固有渗透率定律纳入模型。还确定了保留曲线,同时考虑到化学物质对回填行为的影响。饱和过程的模拟表明,研究HC(氢化学)配方的这些问题的重要性,尤其是要重现此类混合物的长期性能时。

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