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Model Simulations of Particle Aggregation Effect on Colloid Exchange between Streams and Streambeds

机译:颗粒聚集对河床与河床之间胶体交换影响的模型模拟

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摘要

Colloids found in natural streams have large reactive surface areas, which makes them significant absorbents and carriers for pollutants. Stream-subsurface exchange plays a critical role in regulating the transport of colloids and contaminants in natural streams. Previous process-based multiphase exchange models were developed without consideration of colloid-colloid interaction. However, many studies have indicated that aggregation is a significant process and needs to be considered in stream process analysis. Herein, a new colloid exchange model was developed by including particle aggregation in addition to colloid settling and filtration. Self-preserving size distribution concepts and classical aggregation theory were employed to model the aggregation process. Model simulations indicate that under conditions of low filtration and high degree of particle-particle interaction, aggregation could either decrease or increase the amount of colloids retained in streambeds, depending on the initial particle size. Thus, two possible cases may occur including enhanced colloid deposition and facilitated colloid transport. Also, when the aggregation rate is high and filtration increases, more particles are retained by bed sediments due to filtration, and fewer are aggregated, which reduces the extent of aggregation effect on colloid deposition. The work presented here will contribute to a better understanding and prediction of colloid transport phenomena in natural streams.
机译:天然流中发现的胶体具有较大的反应表面积,这使其成为重要的污染物吸收剂和载体。流-地下交换在调节天然流中胶体和污染物的运输中起关键作用。在不考虑胶体-胶体相互作用的前提下,开发了基于过程的多相交换模型。但是,许多研究表明,聚集是一个重要的过程,需要在流过程分析中加以考虑。在本文中,开发了一种新的胶体交换模型,除了胶体沉降和过滤外,还包括颗粒聚集。采用自保留大小分布概念和经典的聚合理论来对聚合过程进行建模。模型模拟表明,在低过滤和高程度的颗粒-颗粒相互作用的条件下,取决于初始粒径,聚集可能会减少或增加保留在流化床中的胶体数量。因此,可能发生两种可能的情况,包括增强的胶体沉积和促进的胶体运输。而且,当聚集速率高并且过滤增加时,由于过滤而使更多的颗粒被床沉积物保留,并且较少聚集,这降低了对胶体沉积的聚集作用的程度。本文介绍的工作将有助于更好地理解和预测天然流中的胶体运输现象。

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  • 来源
    《Environmental Science & Technology》 |2011年第13期|p.5614-5621|共8页
  • 作者

    Trachu Areepitak; Jianhong Ren;

  • 作者单位

    Department of Environmental Engineering, Texas A&M University-Kingsville, Kingsville, Texas 78363, United States;

    Department of Environmental Engineering, Texas A&M University-Kingsville, Kingsville, Texas 78363, United States;

  • 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
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