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首页> 外文期刊>Water Science and Technology >Analysis and optimization of flocculation activity and turbidity reduction in kaolin suspension using pectin as a biopolymer flocculant
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Analysis and optimization of flocculation activity and turbidity reduction in kaolin suspension using pectin as a biopolymer flocculant

机译:以果胶为生物聚合物絮凝剂的高岭土悬浮液的絮凝活性和浊度降低的分析与优化

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The performance of pectin in turbidity reduction and the optimum condition were determined using Response Surface Methodology (RSM). The effect of pH, cation's concentration, and pectin's dosage on flocculating activity and turbidity reduction was investigated at three levels and optimized by using Box-Behnken Design (BBD). Coagulation and flocculation process were assessed with a standard jar test procedure with rapid and slow mixing of a kaolin suspension (aluminium silicate), at 150 rpm and 30 rpm, respectively, in which a cation e.g. Al3+, acts as coagulant, and pectin acts as the flocculant. In this research, all factors exhibited significant effect on flocculating activity and turbidity reduction. The experimental data and model predictions well agreed. From the 3D response surface graph, maximum flocculating activity and turbidity reduction are in the region of pH greater than 3, cation concentration greater than 0.5 mM, and pectin dosage greater than 20 mg/L, using synthetic turbid wastewater within the range. The flocculating activity for pectin and turbidity reduction in wastewater is at 99%.
机译:使用响应表面法(RSM)确定果胶在降低浊度方面的性能和最佳条件。在三个水平上研究了pH,阳离子浓度和果胶剂量对絮凝活性和浊度降低的影响,并使用Box-Behnken Design(BBD)对其进行了优化。用标准的广口瓶试验程序,分别在150rpm和30rpm下快速和缓慢混合高岭土悬浮液(硅酸铝),评估混凝和絮凝过程。 Al3 +充当凝结剂,果胶充当絮凝剂。在这项研究中,所有因素均对絮凝活性和降低浊度表现出显着影响。实验数据和模型预测完全一致。根据3D响应表面图,使用该范围内的合成混浊废水,最大絮凝活性和混浊度降低是在pH值大于3,阳离子浓度大于0.5 mM和果胶剂量大于20 mg / L的范围内。对果胶的絮凝活性和减少废水中的浊度为99%。

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