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The performance of enhanced coagulation for treating slightly polluted raw water combining polyaluminum chloride with variable charge soil

机译:聚氯化铝与可变电荷土壤联合处理强化混凝处理微污染原水的性能。

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摘要

The feasibility and effectiveness of treating pollutants in slightly polluted raw water by variable charge soil and polyaluminum chloride (PAC) was investigated. Removal efficiencies of turbidity, phenol, aniline, algae and heavy metals (Cu2+, Zn2+ and Pb2+) were used to evaluate the coagulation performance. The results indicated that the addition of variable charge soil as a coagulant aid is advantageous due to the improvement of removal efficiencies. The tests also demonstrated that the presence of variable charge soil increased the removal of turbidity rather than adding residuary turbidity. The use of variable charge soil produced settleable flocs of greater density and bigger size. The main mechanism involved in the PAC coagulation was supposed to be sweep flocculation as well as charge-neutralization. Variable charge soil played a promoted aid role by adsorption in the enhanced coagulation process. It is concluded that the enhanced coagulation by PAC and variable charge soil, as coagulant and adsorbent, is more effective and efficient than traditional coagulation.
机译:研究了用可变电荷土壤和聚氯化铝(PAC)处理轻度污染的原水中污染物的可行性和有效性。用混浊,苯酚,苯胺,藻类和重金属(Cu2 +,Zn2 +和Pb2 +)的去除效率来评估混凝性能。结果表明,由于提高了去除效率,加入可变电荷的土壤作为助凝剂是有利的。测试还表明,可变电荷土壤的存在增加了浊度的去除,而不是增加了残留的浊度。使用可变电荷的土壤产生了更大密度和更大尺寸的可沉降絮凝物。 PAC凝结的主要机理被认为是絮凝絮凝和电荷中和。可变电荷土壤在增强的混凝过程中通过吸附起到了促进辅助的作用。结论是,与传统混凝相比,PAC和可变电荷土壤作为混凝剂和吸附剂的增强混凝作用更为有效。

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