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Analysis of the Impacts of Flocculation Modes and Coagulant Dose on Dissolved Air Flotation

机译:絮凝方式和混凝剂用量对溶解气浮的影响分析

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Polyaluminium chloride (PAC) was adopted as coagulant to treat the high algae-laden water containing lots of cells of Microcysits aeruginosa (MA) by jar test of cogulation/flocculation/dissovled air flotation (C/F/DAF) process. The constant flocculation and the tapered flocculation with two steps were used in C/F stage. Two-dimension fractal dimension (D2) and strength factor (SF) were respectively introduced to characterize the floc form and strength. The impacts of flocculation mode and coagulant dose on C/F/DAF were analysed by studying the floc structure, size and strength. The impacts of flocculation mode and coagulant dose on C/F/DAF process were discussed, and the causes of these impacts were analyzed by investigating floc sizes, structures and strengths formed in different conditions. The experimental results showed that at the PAC dose of 5.6~9.8 mg Al2O3/L, the flocs formed under bridging flocculation had larger size and highly branched structure, and they were more easily removed by flotation. Comparing the tapered flocculation with the constant flocculation, the former mode could obtain the satisfactory effect of flotation separation at a less dose, because the floc strength formed by this flocculation mode was greater. On the condition of the same energy consumption, the tapered flocculation is more advantageous than the constant flocculation in cost reduction for saving coagulant dose.
机译:采用凝结/絮凝/脱气浮选(C / F / DAF)罐试验,采用聚氯化铝(PAC)作为混凝剂处理含大量铜绿微囊藻(MA)细胞的高藻含量水。在C / F阶段,采用两步恒定絮凝和锥形絮凝。分别引入二维分形维数(D2)和强度因子(SF)来表征絮体的形态和强度。通过研究絮体的结构,大小和强度,分析了絮凝方式和絮凝剂用量对C / F / DAF的影响。讨论了絮凝方式和凝结剂用量对C / F / DAF工艺的影响,并通过研究絮凝物的大小,结构和在不同条件下形成的强度,分析了这些影响的原因。实验结果表明,PAC用量为5.6〜9.8 mg Al2O3 / L时,桥接絮凝形成的絮凝物具有较大的尺寸和高度分支的结构,且易于通过浮选除去。将锥形絮凝与恒定絮凝相比较,前一种方式可以在较小剂量下获得满意的浮选效果,因为这种絮凝方式形成的絮凝强度更大。在能量消耗相同的情况下,锥形絮凝比恒定絮凝在降低成本方面更有利于节省凝结剂剂量。

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