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Retention and Transport of Amphiphilic Colloids under Unsaturated Flow Conditions:Effect of Particle Size and Surface Property

机译:两性胶体在不饱和流动条件下的保留和转运:粒径和表面性质的影响

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摘要

The purpose of this study was to examine the mechanisms responsible for deposition and transport of amphiphilic colloids with a wide range of particle sizes (20-420 nm) through porous media.A series of saturated and unsaturated column experiments were conducted using amphiphilic latex microspheres and a hydrophilic silica colloid.We found that the amphiphilic latex particles were retained to a greater extent than the hydrophilic silica colloid in unsaturated media.This was attributed to colloidal attachment atthe air-water interface due mainly to hydrophobic interactions.We also found that dependence of colloid retention on particle size was nonlinear.There existed a fraction of colloids with greater mobility than other fractions,which we referred to as the most mobile colloids.As particle size increased from 20 to 420 nm,colloid deposition rate first decreased to reach a minimum value at ~100 nm then increased,indicating that different retention mechanisms were involved.We showed that conducting saturated transport experiments and analysis using filtration theory may be an effective approach for determining the most mobile colloid size(s) in porous media,perhaps even for unsaturated flow conditions.This study highlights the importance of including size effect and surface properties when predicting concentrations and fluxes of amphiphilic colloids or colloid-bound amphiphilic and hydrophobic contaminants in the subsurface environment.
机译:这项研究的目的是探讨造成两亲性胶体通过多孔介质沉积和运输的各种粒径(20-420 nm)的机理。使用两亲性胶乳微球和我们发现两亲性胶乳颗粒在不饱和介质中的保留程度比亲水性二氧化硅胶体更大,这归因于胶体在空气-水界面处的附着,这主要是由于疏水相互作用所致。胶体在粒径上的保留是非线性的。存在一部分胶体比其他组分具有更大的迁移率,我们称之为流动性最高的胶体。随着粒径从20 nm增加到420 nm,胶体沉积速率先降低到最小然后在〜100 nm处的值增加,表明涉及不同的保留机制。进行饱和输运实验并使用过滤理论进行分析可能是确定多孔介质中最大流动胶体尺寸的有效方法,甚至在非饱和流动条件下也是如此。本研究强调了预测浓度时包括尺寸效应和表面性质的重要性和地下环境中两亲胶体或胶体结合的两亲和疏水性污染物的通量。

著录项

  • 来源
    《Environmental Science & Technology》 |2005年第20期|p.7853-7859|共7页
  • 作者

    JIE ZHUANG; JUN QI; YAN JIN;

  • 作者单位

    Department of Plant and Soil Sciences,University of Delaware,Newark,Delaware 19716;

    Department of Plant and Soil Sciences,University of Delaware,Newark,Delaware 19716;

    Department of Plant and Soil Sciences,University of Delaware,Newark,Delaware 19716;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

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