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Influences of Various Aluminum Coagulants on Algae Floc Structure, Strength and Flotation Effect

机译:各种铝凝结剂对藻类结构,强度和浮选效果的影响

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Floc structure and strength play important roles in particles separation in water treatment. In a jar test of coagulation/flocculation/dissolved air flotation (C/F/DAF) process, aluminium sulphate (AS) and polyaluminium chloride (PAC) were used as coagulants to treat the algal-rich water which had a high concentration of Microcysits aeruginosa (MA) cells. Two-dimension fractal dimension (D2) and strength factor (SF) were used to represent the floc structure and strength respectively. The experimental results showed: meeting the appropriate dose range (measured in Al~(3+)) simultaneously, dose of PAC was less than AS; and treatment effect obtained by PAC was better than AS. Adding the moderate PAC, the algae flocs with highly branched structure and higher strength formed by bridging flocculation; this kind of algae flocs could firmly adhere to more tiny bubbles and be significantly more resistant to the hydraulic shear. So, compared with adding AS, the performance of flotation separation could be improved by PAC.
机译:絮凝结构与强度在水处理中分离中的重要作用。在凝血/絮凝/溶解的空气浮选(C / F / DAF)过程中,硫酸铝(AS)和聚铝氯化铝(PAC)用作凝结剂以治疗具有高浓度微囊体的藻类水铜绿假单胞菌(MA)细胞。使用双尺寸分形尺寸(D2)和强度因子(SF)分别表示絮凝结构和强度。实验结果表明:满足适当剂量范围(在Al〜(3+))同时,PAC的剂量小于为; PAC获得的治疗效果优于。添加温和PAC,具有高分支结构的藻类絮状物和通过桥接絮凝形成的更高强度;这种藻类絮状物可以牢固地粘附在更小的气泡上,并且对液压剪切有明显更耐受。因此,与加入相比,PAC可以改善浮选分离的性能。

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