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Transport of biocolloids in water saturated columns packed with sand: Effect of grain size and pore water velocity

机译:生物胶体在充满沙子的水饱和柱中的运输:粒径和孔隙水速度的影响

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摘要

The main objective of this study was to evaluate the combined effects of grain size and pore water velocity on the transport in water saturated porous media of three waterborne fecal indicator organisms (Escherichia coli, MS2, and 0X174) in laboratory-scale columns packed with clean quartz sand. Three different grain sizes and three pore water velocities were examined and the attachment behavior of Escherichia coli, MS2, and ΦX174 onto quartz sand was evaluated. The mass recoveries of the biocolloids examined were shown to be highest for Escherichia coli and lowest for MS2. However, no obvious relationships between mass recoveries and water velocity or grain size could be established from the experimental results. The observed mean dispersivity values for each sand grain size were smaller for bacteria than coliphages, but higher for MS2 than ΦX174. The single collector removal and collision efficiencies were quantified using the classical colloid filtration theory. Furthermore, theoretical collision efficiencies were estimated only for E. coli by the Interaction-Force-Boundary-Layer, and Maxwell approximations. Better agreement between the experimental and Maxwell theoretical collision efficiencies were observed.
机译:这项研究的主要目的是评估粒径和孔隙水速度对三种水性粪便指示生物(大肠杆菌,MS2和0X174)在装有清洁填料的实验室规模色谱柱中在水饱和多孔介质中迁移的综合影响。石英砂。检查了三种不同的粒径和三种孔隙水速度,并评估了大肠杆菌,MS2和ΦX174在石英砂上的附着行为。结果显示,所检查的生物胶体的质量回收率在大肠杆菌中最高,而在MS2中最低。然而,根据实验结果,质量回收率与水速或粒度之间没有明显的关系。细菌对每种沙粒的观察到的平均分散度值均比噬菌体小,而对MS2的平均分散度则比ΦX174高。使用经典的胶体过滤理论对单个收集器的去除和碰撞效率进行了定量。此外,理论上的碰撞效率仅通过相互作用力边界层和麦克斯韦近似值估算出来。观察到实验和麦克斯韦理论碰撞效率之间的更好的一致性。

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