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Determination Of Sorption Properties Of Intact Rock Samples: New Methods Based On Electromigration

机译:确定完整岩石样品的吸附特性:基于电迁移的新方法

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Two new methods for determining sorption coefficients in large rock samples have been developed. The methods use electromigration as a means to speed up the transport process, allowing for fast equilibration between rock sample and tracer solution. An electrical potential gradient acts as a driving force for transport in addition to the concentration gradient and forces the cations through the rock sample towards the cathode. The electrical potential gradient induces both electromigration and electroosmotic flow with a resulting solute transport that is large compared to diffusive fluxes. In one of the methods, the solute is driven through the sample and collected at the outlet side. In the other, simpler method, the rock sample is equilibrated by circulating the solute through the sample. The equilibration of rock samples, up to 5 cm in length, with an aqueous solution has been accomplished within days to months. Experiments using cesium as a sorbing tracer yield results consistent with considerably more time demanding in-diffusion experiments. These methods give lower distribution coefficients than those obtained using traditional batch experiments with crushed rock.
机译:已经开发出两种确定大岩石样品中吸附系数的新方法。该方法使用电迁移作为加速运输过程的方法,从而可以在岩石样品和示踪剂溶液之间快速平衡。除浓度梯度外,电势梯度还用作传输的驱动力,并迫使阳离子穿过岩石样品流向阴极。电位梯度既引起电迁移又引起电渗流,与溶质通量相比,溶质的迁移量大。在一种方法中,溶质被驱动通过样品并在出口侧收集。在另一种更简单的方法中,通过使溶质在样品中循环来平衡岩石样品。在数天至数月内,可以完成长达5厘米长的岩石样品与水溶液的平衡。使用铯作为吸附示踪剂的实验结果与耗时较长的扩散实验相一致。这些方法的分配系数比使用传统碎石实验获得的分配系数要低。

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