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In Situ Colloid Mobilization in Hanford Sediments under Unsaturated Transient Flow Conditions: Effect of Irrigation Pattern

机译:非饱和瞬变流动条件下汉福德沉积物的原位胶体动员:灌溉方式的影响

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Colloid transport may facilitate off-site transport of radioactive wastes at the Hanford site, Washington State. In this study, column experiments were conducted to examine the effect of irrigation schedule on releases of in situ colloids from two Hanford sediments during saturated and unsaturated transient flow and its dependence on solution ionic strength, irrigation rate, and sediment texture. Results show that transient flow mobilized more colloids than steady-state flow. The number of short-term hydrological pulses was more important than total irrigation volume for increasing the amount of mobilized colloids. This effect increased with decreasing ionic strength. At an irrigation rate equal to 5% of the saturated hydraulic conductivity, a transient multipulse flow in 100 mM NaNO_3 was equivalent to a 50-fold reduction of ionic strength (from 100 mM to 2 mM) with a single-pulse flow in terms of their positive effects on colloid mobilization. Irrigation rate was more important for the initial release of colloids. In addition to water velocity, mechanical straining of colloids was partly responsible for the smaller colloid mobilization in the fine than in the coarse sands, although the fine sand contained much larger concentrations of colloids than the coarse sand.
机译:胶体运输可以促进放射性废物在华盛顿州汉福德基地的异地运输。在这项研究中,进行了柱试验,以检验灌溉时间表对饱和和非饱和瞬变流动期间两种汉福德沉积物中原位胶体释放的影响及其对溶液离子强度,灌溉速率和沉积物质地的依赖性。结果表明,瞬态流动比稳态流动动员了更多的胶体。短期水文脉冲的数量比总灌溉量更重要,以增加动员胶体的数量。随着离子强度的降低,该效果增强。在等于饱和导水率的5%的冲洗速率下,在100 mM NaNO_3中的瞬时多脉冲流动相当于离子强度的单脉冲流动降低了50倍(从100 mM降低到2 mM)。它们对胶体动员的积极作用。灌溉速率对于胶体的初始释放更为重要。除水速外,胶体的机械应变是细砂中比粗砂中较小的胶体迁移的部分原因,尽管细砂中胶体的浓度比粗砂大得多。

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