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Review on subsurface colloids and colloid-associated contaminant transport in saturated porous media

机译:饱和多孔介质中地下胶体及胶体相关污染物的迁移研究进展

摘要

In this review article, the authors present up-to-date developments on experimental, modeling and field studies on the role of subsurface colloidal fines on contaminant transport in saturated porous media. It is a complex phenomenon in porous media involving several basic processes such as colloidal fines release, dispersion stabilization, migration and fines entrapment/plugging at the pore constrictions and adsorption at solid/liquid interface. The effects of these basic processes on the contaminant transport have been compiled. Here the authors first present the compilation on in situ colloidal fines sources, release, stabilization of colloidal dispersion and migration which are a function of physical and chemical conditions of subsurface environment and finally their role in inorganic and organic contaminants transport in porous media. The important aspects of this article are as follows: (i) it gives not only complete compilation on colloidal fines-facilitated contaminant transport but also reviews the new role of colloidal fines in contaminant retardation due to plugging of pore constrictions. This plugging phenomenon also depends on various factors such as concentration of colloidal fines, superficial velocity and bead-to-particle size ratio. This plugging-based contaminant transport can be used to develop containment technique in soil and groundwater remediation. (ii) It also presents the importance of critical salt concentration (CSC), critical ionic strength for mixed salt, critical shear stressor critical particle concentration (CPC) on in situ colloidal fines release and migration and consequently their role on contaminant transport in porous media. (iii) It also reviews another class of colloidal fines called biocolloids and their transport in porous media. Finally, the authors highlight the future research based on their critical review on colloid-associated contaminant transport in saturated porous media.
机译:在这篇综述文章中,作者介绍了有关地下胶体细粉在饱和多孔介质中污染物迁移中的作用的实验,建模和现场研究的最新进展。在多孔介质中,这是一个复杂的现象,涉及几个基本过程,例如胶体细粉的释放,分散液的稳定化,迁移以及细粉在孔隙收缩处的截留/堵塞以及固/液界面的吸附。这些基本过程对污染物迁移的影响已被汇总。在这里,作者首先介绍了原位胶体细粉的来源,胶体分散的释放,稳定和迁移的汇编,这是地下环境的物理和化学条件的函数,最后是它们在多孔介质中无机和有机污染物运输中的作用。本文的重要方面如下:(i)它不仅完整地介绍了胶体细粉促进污染物输送的过程,而且还回顾了胶体细粉在堵塞孔口堵塞引起的污染物阻滞中的新作用。这种堵塞现象还取决于各种因素,例如胶体细粉的浓度,表面速度和珠粒比。这种基于堵塞的污染物传输可用于开发土壤和地下水修复中的遏制技术。 (ii)还提出了临界盐浓度(CSC),混合盐的临界离子强度,临界剪切应力或临界颗粒浓度(CPC)对原位胶体细粒释放和迁移的重要性,以及它们在多孔介质中污染物迁移中的作用。 (iii)它还审查了另一类称为生物胶体的胶体细粉及其在多孔介质中的运输。最后,作者基于对饱和多孔介质中胶体相关污染物传输的严格评论,着重指出了未来的研究。

著录项

  • 作者

    SEN TUSHAR KANTI; KHILAR KC;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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