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Study of coagulant effect on shallow-bed (traveling-bridge) contact filtration for effluent reuse

机译:废水回用对浅层(游桥)接触式过滤的混凝作用研究

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In this study, a shallow-bed traveling-bridge (SBTB) filter was used as a contact filter, to investigate the effect of coagulant addition to the filtration efficiency. The filter bed was 25 cm deep, containing 0.55 mm quartz sand. 10-15 m~3/hr. secondary effluents were filtered at 3.5-5 m/hr. For different alum doses effective removal of particulates up to (70-80%), turbidity (65-70%) and phosphates up to (80-90%) was obtained. The headloss data indicated an increasing surface straining with the addition of alum which, by changing the (aluminium/TSS) ratio, increased the floc volume. For this reason an optimum alum dose range would be 10-15 mg/l. The efficiency of using high molecular weight, medium to high charge density cationic polymers as primary coagulants was also investigated. The medium cationic high molecular weight polymer used as a primary coagulant at a 0.5 mg/l dose was able to efficiently remove > 10 #mu#m particulates but did not significantly improve turbidity. The same polymer used at a 3 mg/l dose improved the removal of the whole range of particles. By using a high cationis high molecular weight polymer as a secondary coagulant it was possible to decrease the alum dose necessary for an efficient filtration.
机译:在这项研究中,浅层移动桥(SBTB)过滤器用作接触式过滤器,以研究添加混凝剂对过滤效率的影响。滤床深25厘米,含有0.55毫米石英砂。 10-15 m〜3 / hr。二级流出物以3.5-5 m / hr的速度过滤。对于不同的明矾剂量,可有效去除高达(70-80%)的颗粒,浊度(65-70%)和高达(80-90%)的磷酸盐。水头损失数据表明,添加明矾后表面应变增加,通过改变(铝/ TSS)比,絮状物体积增加。因此,最佳明矾剂量范围为10-15 mg / l。还研究了使用高分子量,中到高电荷密度阳离子聚合物作为主要凝结剂的效率。以0.5 mg / l的剂量用作主要凝结剂的中等阳离子高分子量聚合物能够有效地去除> 10#μm的颗粒,但不会显着改善浊度。以3 mg / l的剂量使用相同的聚合物可改善整个颗粒范围的去除。通过使用高阳离子含量的高分子量聚合物作为辅助凝结剂,可以减少有效过滤所需的明矾剂量。

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