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增强胶体油滴在饱和和非饱和砂柱中的传输。

Enhanced transport of colloidal oil droplets in saturated and unsaturated sand columns.

机构信息

Department of Environmental Hydrology & Microbiology, Zuckerberg Institute for Water Research, Ben-Gurion University of the Negev, Sede Boqer Campus, Midreshet Ben-Gurion, 84990 Israel.

出版信息

Environ Sci Technol. 2011 Nov 1;45(21):9205-11. doi: 10.1021/es104040k. Epub 2011 Oct 11.

Abstract

Colloidal-sized triacylglycerol droplets demonstrated enhanced transport compared to ideal latex colloid spheres in both saturated and unsaturated quartz sand columns. Oil droplets (mean diameter 0.74 ± 0.03 μm, density 0.92 g cm(-3), ζ-potential -34 ± 1 mV) were injected simultaneously with latex microsphere colloids (FluoSpheres; density 1.055 g cm(-3), diameters 0.02, 0.2, and 1.0 μm, ζ-potentials -16 ± 1, -30 ± 2, and -49 ± 1, respectively) and bromide into natural quartz sand (ζ-potential -63 ± 2 mV) via short-pulse column breakthrough experiments. Tests were conducted under both saturated and unsaturated conditions. Breakthrough of oil droplets preceded bromide and FluoSpheres. Recovery of oil droplets was 20% greater than similarly sized FluoSpheres in the saturated column, and 16% greater in the 0.18 ± 0.01 volumetric water content (VWC) unsaturated column. Higher variability was observed in the 0.14 ± 0.01 VWC column experiments with oil droplet recovery only slightly greater than similarly sized FluoSpheres. The research presents for the first time the direct comparison of colloidal oil droplet transport in porous media with that of other colloids, and demonstrates transport under unsaturated conditions. Based on experimental results and theoretical analyses, we discuss possible mechanisms that lead to the observed enhanced mobility of oil droplets compared to FluoSpheres with similar size and electrostatic properties.

摘要

胶体质粒三酰基甘油滴在饱和和不饱和的石英砂柱中都表现出比理想的乳胶胶体球更好的传输性能。油滴(平均直径 0.74 ± 0.03 μm,密度 0.92 g cm(-3),ζ-电位 -34 ± 1 mV)与乳胶微球胶体(FluoSpheres;密度 1.055 g cm(-3),直径 0.02、0.2 和 1.0 μm,ζ-电位 -16 ± 1、-30 ± 2 和-49 ± 1)以及溴化物一起通过短脉冲柱突破实验注入天然石英砂(ζ-电位 -63 ± 2 mV)中。在饱和和不饱和条件下进行了测试。油滴的突破先于溴化物和 FluoSpheres。在饱和柱中,油滴的回收率比同等大小的 FluoSpheres 高 20%,在 0.18 ± 0.01 体积含水量(VWC)不饱和柱中高 16%。在 0.14 ± 0.01 VWC 柱实验中观察到更高的变异性,油滴回收率仅略高于同等大小的 FluoSpheres。该研究首次直接比较了胶体油滴在多孔介质中的传输与其他胶体的传输,并展示了在不饱和条件下的传输。基于实验结果和理论分析,我们讨论了导致油滴与具有相似尺寸和静电特性的 FluoSpheres 相比表现出增强迁移性的可能机制。

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