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首页> 外文期刊>Applied Microbiology >Algal Flocculation with Synthetic Organic Polyelectrolytes
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Algal Flocculation with Synthetic Organic Polyelectrolytes

机译:合成有机聚电解质的藻絮凝

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The feasibility of removing algae from water and wastewater by chemical flocculation techniques was investigated. Mixed cultures of algae were obtained from both continuous- and batch-fed laboratory reactors. Representative cationic, anionic, and nonionic synthetic organic polyelectrolytes were used as flocculants. Under the experimental conditions, chemically induced algal flocculation occurred with the addition of cationic polyelectrolyte, but not with anionic or nonionic polymers, although attachment of all polyelectrolyte species to the algal surface is shown. The mechanism of chemically induced algal flocculation is interpreted in terms of bridging phenomena between the discrete algal cells and the linearly extended polymer chains, forming a three-dimensional matrix that is capable of subsiding under quiescent conditions. The degree of flocculation is shown to be a direct function of the extent of polymer coverage of the active sites on the algal surface, although to induce flocculation by this method requires that the algal surface charge must concurrently be reduced to a level at which the extended polymers can bridge the minimal distance of separation imposed by electrostatic repulsion. The influence of pH, algal concentration, and algal growth phase on the requisite cationic flocculant dose is also reported.
机译:研究了通过化学絮凝技术从水和废水中去除藻类的可行性。藻类的混合培养物是从连续进料和分批进料的实验室反应器中获得的。代表性的阳离子,阴离子和非离子合成有机聚电解质用作絮凝剂。在实验条件下,尽管显示了所有聚电解质种类在藻类表面的附着,但在添加阳离子聚电解质的情况下发生了化学诱导的藻类絮凝,但没有添加阴离子或非离子聚合物。化学诱导的藻类絮凝的机理可以通过离散的藻类细胞与线性延伸的聚合物链之间的桥连现象来解释,从而形成能够在静态条件下沉降的三维基质。絮凝程度显示为藻类表面活性位点的聚合物覆盖程度的直接函数,尽管通过这种方法诱导絮凝需要同时将藻类表面电荷降低到一定程度,聚合物可以消除静电排斥带来的最小分离距离。还报道了pH,藻类浓度和藻类生长期对所需阳离子絮凝剂剂量的影响。

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