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Interactions of Dissolved Organic Matter with Natural and Engineered Inorganic Colloids: A Review

机译:溶解的有机物与天然和工程无机胶体的相互作用:综述。

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摘要

This contribution critically reviews the state of knowledge on interactions of natural colloids and engineered nanoparticles with natural dissolved organic materials (DOM). These interactions determine the behavior and impact of colloids in natural system. Humic substances, polysaccharides, and proteins present in natural waters adsorb onto the surface of most colloids. We outline major adsorption mechanisms and structures of adsorption layers reported in the literature and discuss their generality on the basis of particle type, DOM type, and media composition. Advanced characterization methods of both DOM and colloids are needed to address insufficiently understood aspects as DOM fractionation upon adsorption, adsorption reversibility, and effect of capping agent. Precise knowledge on adsorption layer helps in predicting the colloidal stability of the sorbent. While humic substances tend to decrease aggregation and deposition through electrostatic and steric effects, bridging-flocculation can occur in the presence of multivalent cations. In the presence of DOM, aggregation may become reversible and aggregate structure dynamic. Nonetheless, the role of shear forces is still poorly understood. If traditional approaches based on the DLVO-theory can be useful in specific cases, quantitative aggregation models taking into account DOM dynamics, bridging, and disaggregation are needed for a comprehensive modeling of colloids stability in natural media.
机译:这一贡献批判性地回顾了有关天然胶体和工程纳米粒子与天然溶解有机材料(DOM)相互作用的知识状态。这些相互作用决定了胶体在自然系统中的行为和影响。天然水中存在的腐殖质,多糖和蛋白质吸附在大多数胶体的表面上。我们概述了文献报道的主要吸附机理和吸附层的结构,并根据颗粒类型,DOM类型和介质组成讨论了它们的一般性。需要使用DOM和胶体的高级表征方法来解决人们对DOM吸附分离,吸附可逆性和封端剂作用等方面认识不足的问题。对吸附层的精确了解有助于预测吸附剂的胶体稳定性。尽管腐殖质倾向于通过静电和空间效应减少聚集和沉积,但在存在多价阳离子的情况下可能会发生桥连絮凝。在存在DOM的情况下,聚合可能变得可逆,聚合结构会动态变化。尽管如此,对剪切力的作用仍知之甚少。如果基于DLVO理论的传统方法在特定情况下可能有用,则需要对DOM动态,桥接和分解进行考虑的定量聚合模型,以对天然介质中的胶体稳定性进行全面建模。

著录项

  • 来源
    《Environmental Science & Technology》 |2014年第16期|8946-8962|共17页
  • 作者单位

    Institute for Environmental Sciences, Group of Environmental and Soil Chemistry, University Koblenz-Landau, Fortstrasse 7, D-76829, Landau, Germany;

    Institute for Environmental Sciences, Group of Environmental and Soil Chemistry, University Koblenz-Landau, Fortstrasse 7, D-76829, Landau, Germany;

  • 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
  • 关键词

  • 入库时间 2022-08-17 14:01:08

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