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Flocculation kinetics mechanism and floc formation prepared by poly aluminum chloride coupled with polyacrylamide for ship ballast water

机译:聚氯化铝结合聚丙烯酰胺制备船舶压载水的絮凝动力学机理及絮凝形成

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摘要

The performance of flocculants prepared by poly aluminum chloride (PAC) and polyacrylamide (PAM) on treating ballast water collected at the Dalian new port area, the evaluation depending on the values of reaction parameters, and kinetics mechanism of flocculation were investigated in this study. Accordingly, the flocculants of 0.1 g.L-1, prepared by mixing PAC of 10% with PAM of 2.0%, enabled the removal rate of zooplankton and phytoplankton to reach 91% in ballast water at 20 degrees C. Based on flocculation kinetics mechanism analysis, the efficient vortex size during stirring should be larger than the floc particles, and gradient of fluctuating velocity provide the impetus for turbulence flocculation. The results of this study could be relevant to understanding particle-floc interactions during developmental flocculation, and during application of ballast water treatment.
机译:研究了用聚氯化铝(PAC)和聚丙烯酰胺(PAM)制备的絮凝剂对大连新港区收集的压载水的处理性能,根据反应参数的取值进行了评价,并研究了絮凝的动力学机理。因此,通过将10%的PAC和2.0%的PAM混合而制备的0.1 gL-1絮凝剂可使20℃的压载水中浮游动物和浮游植物的去除率达到91%。根据絮凝动力学机理分析,搅拌过程中有效涡流的大小应大于絮状物颗粒,并且脉动速度的梯度为湍流絮凝提供了动力。这项研究的结果可能与理解发育絮凝过程中和压载水处理应用过程中颗粒-絮凝物的相互作用有关。

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