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Development of methods for on-line measurements of chemical conditions in compacted bentonite

机译:在线测量膨润土中化学条件的方法的发展

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This work describes the development of an on-line method for studying the chemical conditions in compacted water-saturated bentonite. The equipment includes a squeezing cell, measurement electrodes, a reference electrode, and a data-logging system. IrO_x wire was used for the pH measurements and Au and Pt wires for the redox measurements. The electrodes were made in-house at VTT. The reference electrode was a commercial leak-free electrode. The measurement electrodes were installed in the bentonite, while the reference electrode was placed in water outside the clay. The contact between the reference electrode and the measurement electrodes was established via the solution in a tube. The work included first a test and calibration of the electrodes in various standard solutions. The performance of the electrodes was subsequently studied in compacted MX-80 in squeezing cell experiments. The squeezing cell initially contained MX-80 mixed with different solutions at a dry density of 0.8-0.9 Mg/m~3. The pore water was then slowly squeezed out from the clay until the final density of 1.5 Mg/m~3 was reached. The measurement electrodes were then placed in the clay and the potential measurements were started. At the end of the experiments the electrodes were removed from bentonite and recalibrated. The pH and Eh in the squeezed pore waters were determined for comparison. The results obtained so far have led to the conclusion that it is possible to perform pH measurements in compacted bentonite by using IrO_x electrodes. The electrode can survive the swelling pressure inside compacted water-saturated clay without losing its ability to function as a pH electrode. It is also possible to perform Eh measurements in compacted clay by using Au and Pt electrodes.
机译:这项工作描述了一种在线方法的研究,该方法用于研究压实的水饱和膨润土中的化学条件。该设备包括一个挤压池,测量电极,一个参比电极和一个数据记录系统。 IrO_x线用于pH测量,Au和Pt线用于氧化还原测量。电极在VTT内部制作。参比电极是市售的无泄漏电极。将测量电极安装在膨润土中,而将参比电极放置在粘土外部的水中。参比电极与测量电极之间的接触是通过试管中的溶液建立的。这项工作首先包括在各种标准溶液中对电极进行测试和校准。随后在压紧式电池实验中在压紧的MX-80中研究了电极的性能。挤压池最初包含MX-80,以不同的溶液混合,干密度为0.8-0.9 Mg / m〜3。然后从粘土中缓慢挤出孔隙水,直到达到1.5 Mg / m〜3的最终密度。然后将测量电极放置在粘土中并开始电势测量。在实验结束时,将电极从膨润土中取出并重新校准。测定被挤压的孔隙水中的pH和Eh以进行比较。迄今为止获得的结果得出结论,可以通过使用IrO_x电极在压实膨润土中进行pH测量。该电极可以承受压实的水饱和粘土内部的膨胀压力,而不会失去其作为pH电极的功能。还可以通过使用Au和Pt电极在压实的粘土中执行Eh测量。

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