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Advanced phosphorus removal via coagulation, flocculation and microsieve filtration in tertiary treatment

机译:通过凝固,絮凝和三级处理过滤的高级磷去除

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The applicability of microsieve technology together with coagulation and flocculation for advanced phosphorus removal was investigated. A pilot unit including a microsieve with 10 mu m mesh size was operated continuously with secondary effluent from Ruhleben wastewater treatment plant in Berlin. By applying a pretreatment of 0.07-0.09 mmol/L (as metal) coagulant and 1.5-2 mg/L cationic polymer, total phosphorus values below 80 mu g/L were achieved. Coagulation with polyaluminum chloride (PACl) produced a better effluent quality compared to FeCl3, as less suspended solids and less residual coagulant were found in the microsieve effluent. In addition, the transmittance of UV radiation through the water was improved by using PACl. The produced amount of backwash water was always below 3% (on average 1.6%). Under optimized mixing conditions, polymer doses of 0.6 mg/L were possible without losses in water quality and filtration performance. Microsieving with chemical pretreatment is a viable option for high quality effluent polishing.
机译:混凝和絮凝先进的除磷微孔筛技术融合在一起的适用性进行了研究。导频单元,包括具有10微米微筛中号筛目大小与来自在柏林Ruhleben污水处理厂二级出水连续操作。通过施加0.07-0.09毫摩尔/ L(以金属计)混凝剂和1.5-2 mg / L的阳离子聚合物,低于80亩克/升总磷值的预处理得以实现。相比三氯化铁混凝聚合氯化铝(聚合铝)产生更好的流出物质量,在微筛流出物中发现如以下的悬浮固体和较少的残余混凝剂。此外,UV辐射的通过水的透射率是通过使用聚合铝改善。的回洗水的生产量为总是低于3%(平均1.6%)。在优化的混合条件,聚合物的剂量为0.6毫克/升是可能的,而不在水的质量和过滤性能的损失。与化学预处理Microsieving是高质量出水抛光一个可行的选择。

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