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Colloid-associated contaminant transport in porous media: 1. Experimental studies

机译:胶体相关污染物在多孔介质中的迁移:1.实验研究

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Many studies have identified colloid-associated transport of contaminants as an important mechanism of contaminant migration through groundwater. It is a complex phenomenon in porous media involving several basic processes such as adsorption of contaminants, release and migration of colloidal fines, and entrapment of fines at the pore constrictions. The effects of these basic processes on the contaminant transport are studied. Column experiments are conducted to study the effects of the mobilization and migration of colloidal fines, kaolin on the transport of contaminant, and Ni2+ metal ion through the sand beds containing kaolin particles under both nonplugging and plugging conditions. As reported in literature, colloidal fines can facilitate the contaminant transport when they migrate with the flow. In the absence of migration, kaolin-sand beds retard Ni2+ transport in comparison to sand beds due to their higher adsorption capacity, but the sand-kaolin composite bed acts like an inefficient adsorption column with percentage saturation (which is in general below 25%). It is interesting to note that under plugging conditions, which can be induced by using a lower bead size to particle-size ratio, the breakthrough curves are more flattened and delayed at a higher kaolin content of the bed. [References: 28]
机译:许多研究已将与胶体相关的污染物运输视为污染物通过地下水迁移的重要机制。在多孔介质中,这是一个复杂的现象,涉及几个基本过程,例如污染物的吸附,胶体细粒的释放和迁移,以及细粒在孔颈处的滞留。研究了这些基本过程对污染物迁移的影响。进行柱实验以研究胶体细粉,高岭土在非堵塞和堵塞条件下通过含高岭土颗粒的沙床的污染物迁移和迁移对污染物和Ni2 +金属离子的迁移的影响。如文献报道,当胶体细粉随流动而迁移时,它们可以促进污染物的运输。在没有迁移的情况下,高岭土砂床由于具有较高的吸附能力而比沙床具有更高的Ni2 +传输速率,但沙高岭土复合床的作用就像是效率低下的吸附塔,其饱和度为百分比(通常低于25%) 。有趣的是,在堵塞条件下(可通过使用较低的珠子尺寸与粒径比来诱导),在较高的高岭土含量下,穿透曲线更平坦且延迟。 [参考:28]

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