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Colloid Retention in Unsaturated Porous Media as Impacted by Colloid Size

机译:胶体尺寸对不饱和多孔介质中胶体保留的影响

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This research investigated the impact of particle size on colloid retention in water unsaturated porous media using column experiments. Three different-sized silica sols were used as the model colloids in this research. Colloid column transport experiments were conducted under steady-state water flow conditions with effective water saturation ranging from 0.2 to 1.0 in two different-sized porous media. Colloid transport was described by the mobile-immobile two-region transport model. Under saturated conditions, minimal colloids were retained in the porous media. Under water unsaturated conditions, the observations were closely related to system water saturation. At high water saturation (i.e., effective water saturation of 0.80), colloid retention decreased with the increase of colloid size. At intermediate water saturation (i.e., effective water saturation of 0.50), the effect of particle size on colloid retention was not obvious. At low water saturation (i.e., effective water saturation of 0.20), colloid retention in the porous media increased with the increase of particle size. Under constant chemical conditions, colloid retention in the unsaturated porous media was believed to be determined by a balanced effect of shear forces and physical constraints, which was a function of both particle size and water saturation.
机译:这项研究使用柱实验研究了粒径对水不饱和多孔介质中胶体保留的影响。在这项研究中,三种不同尺寸的硅溶胶被用作模型胶体。在两种不同尺寸的多孔介质中,稳态水流条件下的胶体柱传输实验均在0.2至1.0的有效水饱和度下进行。胶体运输是通过移动不动的两区域运输模型来描述的。在饱和条件下,最少的胶体保留在多孔介质中。在水不饱和条件下,观测值与系统水饱和度密切相关。在高水饱和度(即有效水饱和度为0.80)下,胶体保留随着胶体尺寸的增加而降低。在中等水饱和度(即有效水饱和度为0.50)下,粒径对胶体保留的影响不明显。在低水饱和度(即0.20的有效水饱和度)下,多孔介质中胶体的保留量随粒径的增加而增加。在恒定的化学条件下,胶体在不饱和多孔介质中的保留被认为是由剪切力和物理约束的平衡作用决定的,剪切力和物理约束是粒径和水饱和度的函数。

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