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首页> 外文期刊>Clays and clay minerals >TRANSPORT AND EXCHANGE BEHAVIOR OF IONS IN BENTONITE DURING ELECTRO-OSMOTIC CONSOLIDATION
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TRANSPORT AND EXCHANGE BEHAVIOR OF IONS IN BENTONITE DURING ELECTRO-OSMOTIC CONSOLIDATION

机译:膨润土中电渗固过程中离子的迁移和交换行为

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Electro-osmotic consolidation is considered to be an efficient technique for dewatering and consolidation of soft soil. In the present study, four experiments were conducted on a Na-rich bentonite using two reactive electrodes (copper and iron) and two inert electrodes (graphite and stainless steel) to study the transport and exchange behavior of ions during electro-osmotic consolidation. The results showed that the changes in pH and ion contents were limited to the zone close to the electrode due to the buffering capacity of bentonite and the significant reduction in electric current density. The ion concentration profiles indicated that Na+ ions were largely responsible for carrying the pore water to the cathode. The reactive electrodes are better at transporting Na+ ions and therefore induce better drainage than inert electrodes. Ion-exchange reactions occurred between the Cu2+ and Fe2+/Fe3+ ions released and pre-existing Na+ ions in the electrical double layer, causing decreased water adsorption capacity and plasticity index. The swelling and shrinkage characteristics of the bentonite were thus reduced, and electroosmotic consolidation may therefore provide a new way to improve the stability of expansive soils and slopes.
机译:电渗固结被认为是对软土进行脱水和固结的有效技术。在本研究中,使用两个反应性电极(铜和铁)和两个惰性电极(石墨和不锈钢)对富含钠的膨润土进行了四个实验,以研究电渗固结过程中离子的迁移和交换行为。结果表明,由于膨润土的缓冲能力和电流密度的显着降低,pH和离子含量的变化仅限于靠近电极的区域。离子浓度曲线表明,Na +离子主要负责将孔隙水带到阴极。反应性电极在传输Na +离子方面表现更好,因此比惰性电极具有更好的引流性。在电双层中释放的Cu2 +和Fe2 + / Fe3 +离子与预先存在的Na +离子之间发生了离子交换反应,导致吸水能力和可塑性指数降低。从而降低了膨润土的溶胀和收缩特性,因此电渗固结可以为改善膨胀土和边坡的稳定性提供一种新途径。

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