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Sewage treatment by anaerobic biological process associated with dissolved air flotation

机译:厌氧生物工艺与溶解气浮法处理污水

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This paper presents the results of a study performed with a lab-scale batch DAF unit fed with previously coagulated (with FeCl3 or cationic polymer) effluent from a pilot scale up-flow anaerobic sludge blanket (UASB) reactor treating domestic sewage. The adequate coagulation/flocculation conditions chemical dosage, time (Tf) and mean velocity gradient (Gf) in the flocculation step - and air requirements for flotation process were investigated. Best results were achieved for 65 mg.l(-1) of FeCl3 at Tf around 15 min and Gf of 80 s(-1). In the assays where only polymer was applied, 7 mg.l(-1) of cationic polymer dosage gave optimum removals with Tf around 15 min and Gf of 30 s(-1). Air requirements ranged from 9.5 to 19.0 g of air.ms(-3) wastewater. Best TSS (95% and residual of 2 mg.l(-1)), COD (85% and residual of 20 mg.l(-1)) and total phosphate (95% and residual of 0.6 mg.l(-1)) removals were obtained when applying FeCl3, although the use of cationic polymer also produced good level of TSS (74% and residual of 14 mg.l(-1)) and COD (75% and residual of 45 mg.l(-1)) removals. For the UASB-DAF (batch) system and FeCl3, global efficiencies would be 97.2% for GOD, 97.9% for phosphate and 98.9% for TSS. [References: 6]
机译:本文介绍了使用实验室规模的间歇式DAF装置进行的研究结果,该装置装有预先凝结的(用FeCl3或阳离子聚合物制成)来自中试规模上流式厌氧污泥覆盖(UASB)反应器的污水,用于处理生活污水。研究了絮凝步骤中适当的混凝/絮凝条件,化学剂量,时间(Tf)和平均速度梯度(Gf)-以及浮选过程中的空气需求。 65 mg.l(-1)的FeCl3在Tf约15分钟和Gf为80 s(-1)时获得了最佳结果。在仅应用聚合物的测定中,阳离子聚合物剂量为7 mg.l(-1)时,Tf约为15分钟,Gf为30 s(-1)时具有最佳去除效果。空气需求量为9.5至19.0 g air.ms(-3)废水。最佳TSS(95%残留2 mg.l(-1)),COD(85%残留20 mg.l(-1))和总磷酸盐(95%残留0.6 mg.l(-1) ))施用FeCl3时可以去除,尽管使用阳离子聚合物也能产生良好的TSS(74%和14 mg.l(-1)残留)和COD(75%和45 mg.l(- 1))拆除。对于UASB-DAF(分批)系统和FeCl3,GOD的整体效率为97.2%,磷酸盐的整体效率为97.9%,TSS的整体效率为98.9%。 [参考:6]

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