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聚合物和聚合物混合物的吸附和絮凝作用。

Adsorption and flocculation by polymers and polymer mixtures.

机构信息

University College London, Gower Street, London WC1E 6BT, UK.

出版信息

Adv Colloid Interface Sci. 2011 Nov 14;169(1):1-12. doi: 10.1016/j.cis.2011.06.004. Epub 2011 Jun 28.

Abstract

Polymers of various types are in widespread use as flocculants in several industries. In most cases, polymer adsorption is an essential prerequisite for flocculation and kinetic aspects are very important. The rates of polymer adsorption and of re-conformation (relaxation) of adsorbed chains are key factors that influence the performance of flocculants and their mode of action. Polyelectrolytes often tend to adopt a rather flat adsorbed configuration and in this state their action is mainly through charge effects, including 'electrostatic patch' attraction. When the relaxation rate is quite low, particle collisions may occur while the adsorbed chains are still in an extended state and flocculation by polymer bridging may occur. These effects are now well understood and supported by much experimental evidence. In recent years there has been considerable interest in the use of multi-component flocculants, especially dual-polymer systems. In the latter case, there can be significant advantages over the use of single polymers. Despite some complications, there is a broad understanding of the action of dual polymer systems. In many cases the sequence of addition of the polymers is important and the pre-adsorbed polymer can have two important effects: providing adsorption sites for the second polymer or causing a more extended adsorbed conformation as a result of 'site blocking'.

摘要

各种类型的聚合物作为絮凝剂在许多行业中得到广泛应用。在大多数情况下,聚合物吸附是絮凝的必要前提,动力学方面非常重要。聚合物吸附和吸附链再构(松弛)的速率是影响絮凝剂性能及其作用方式的关键因素。聚电解质往往倾向于采用相当平坦的吸附构象,在这种状态下,它们的作用主要是通过电荷效应,包括“静电斑”吸引。当松弛速率相当低时,可能会发生颗粒碰撞,而吸附链仍处于伸展状态,可能会发生聚合物桥接絮凝。这些效应现在已经得到很好的理解,并得到了大量实验证据的支持。近年来,人们对使用多组分絮凝剂,特别是双聚合物系统产生了浓厚的兴趣。在后一种情况下,与使用单一聚合物相比,可能会有显著的优势。尽管存在一些复杂性,但人们对双聚合物系统的作用有了广泛的了解。在许多情况下,聚合物的添加顺序很重要,预吸附的聚合物可以产生两个重要的效果:为第二聚合物提供吸附位点,或者由于“位阻”导致更伸展的吸附构象。

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