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In-situ diffusion of HTO, 22Na+, Cs+ and I- in Opalinus Clay at the Mont Terri underground rock laboratory

机译:HTO,22Na +,Cs +和I-在Opalinus粘土中在Mont Terri地下岩石实验室的原位扩散

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摘要

The diffusion properties of the Opalinus Clay were studied in the underground research laboratory at Mont Terri (Canton Jura, Switzerland) and the results were compared with diffusion data measured in the laboratory on small-scale samples. The diffusion of HTO, Na-22(+), Cs+ and I- were investigated for a period of 10 months. The diffusion equipment used in the field experiment was designed in such a way that a solution of tracers was circulated through a sintered metal screen placed at the end of a borehole drilled in the formation. The concentration decrease caused by the diffusion of tracers into the rock could be followed with time and allowed first estimations of the effective diffusion coefficient. After 10 months, the diffusion zone was over-cored and the tracer profiles measured. From these profiles, effective diffusion coefficients and rock capacity factors Could be extracted by applying a two-dimensional transport model including diffusion and sorption. The simulations were done with the reactive transport code CRUNCH. In addition, results obtained from through-diffusion experiments oil small-sized samples with HTO, Cl-36(-) and Na-22(+) are presented and compared with the in situ data. In all cases. excellent agreement between the two data sets exists. Results for Cs+ indicated five times higher diffusion rates relative to HTO. Corresponding laboratory diffusion measurements are still lacking. However. our Cs+ data are in qualitative agreement wish through-diffusion data for Callovo-Oxfordian argillite rock samples. which also indicate significantly higher effective diffusivities for Cs+ relative to HTO.
机译:在Mont Terri(瑞士汝拉州)的地下研究实验室中研究了Opalinus粘土的扩散特性,并将结果与​​实验室中针对小规模样品测得的扩散数据进行了比较。研究了HTO,Na-22(+),Cs +和I-的扩散,历时10个月。野外实验中使用的扩散设备的设计方式是使示踪剂溶液循环通过位于金属层中钻孔末端的烧结金属筛网。示踪剂扩散到岩石中引起的浓度下降可以随时间变化,并可以对有效扩散系数进行首次估算。 10个月后,扩散区超芯,并测量了示踪剂曲线。从这些剖面中,可以通过应用包括扩散和吸附的二维输运模型来提取有效的扩散系数和岩石承载力因子。使用无功运输代码CRUNCH进行了仿真。此外,还介绍了通过扩散实验获得的含有HTO,Cl-36(-)和Na-22(+)的小尺寸样品的结果,并将其与原位数据进行了比较。在所有情况下。这两个数据集之间存在极好的一致性。 Cs +的结果表明,扩散速率是HTO的五倍。仍然缺乏相应的实验室扩散测量。然而。我们的Cs +数据定性一致,希望能获得卡洛沃-牛津斜方晶石样品的扩散数据。这也表明相对于HTO,Cs +的有效扩散系数明显更高。

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