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Two strategies for phosphorus removal from reject water of municipal wastewater treatment plant using alum sludge

机译:铝污泥去除城市污水处理厂污水中磷的两种策略

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In view of the well recognized need of reject water treatment in MWWTP (municipal wastewater treatment plant), this paper outlines two strategies for P removal from reject water using alum sludge, which is produced as by-product in drinking water treatment plant when aluminium sulphate is used for flocculating raw waters. One strategy is the use of the alum sludge in liquid form for co-conditioning and dewatering with the anaerobically digested activated sludge in MWWTP. The other strategy involves the use of the dewatered alum sludge cakes in a fixed bed for P immobilization from the reject water that refers to the mixture of the supernatant of the sludge thickening process and the supernatant of the anaerobically digested sludge. Experimental trials have demonstrated that the alum sludge can efficiently reduce P level in reject water. The co-conditioning strategy could reduce P from 597-675mgP/L to 0.14-3.20 mgP/L in the supernatant of the sewage sludge while the organic polymer dosage for the conditioning of the mixed sludges would also be significantly reduced. The second strategy of reject water filtration with alum sludge bed has shown a good performance of P reduction. The alum sludge has P-adsorption capacity of 31 mg-P/g-sludge, which was tested under filtration velocity of 1.0 m/h. The two strategies highlight the beneficial utilization of alum sludge in wastewater treatment process in MWWTP, thus converting the alum sludge as a useful material, rather than a waste for landfill.
机译:鉴于已充分认识到MWWTP(市政废水处理厂)中的废水处理需求,本文概述了使用明矾污泥从废水中去除P的两种策略,这些污泥是在饮用水处理厂中由硫酸铝副产品产生的用于絮凝原水。一种策略是使用液态形式的明矾污泥与MWWTP中的厌氧消化的活性污泥进行共调节和脱水。另一种策略涉及在固定床中使用脱水的明矾污泥饼从排污水中固定磷,磷是指污泥浓缩过程的上清液和厌氧消化的污泥的上清液的混合物。实验表明,明矾污泥可以有效降低废水中的磷含量。共处理策略可以将污水污泥上清液中的P从597-675mgP / L降低至0.14-3.20 mgP / L,同时用于调节混合污泥的有机聚合物用量也将大大减少。用明矾污泥床过滤废水的第二种策略显示了良好的P还原性能。明矾污泥的P吸附能力为31 mg-P / g污泥,在1.0 m / h的过滤速度下进行了测试。这两种策略都突出了MWWTP废水处理过程中铝渣的有益利用,从而将铝渣转化为有用的材料,而不是垃圾填埋场。

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