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Enhanced biological phosphorus removal in RBC with SBR modification

机译:通过SBR修饰提高RBC中的生物除磷

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The rotating biological contactor (REIC) system was operationally modified with a sequencing batch reactor to achieve biological phosphorus removal from a weak domestic sewage along with nitrogen removal. This study utilized three REIC units, of which two units were the main units to remove phosphorus and NH4N and the third REIC unit was used as the storage of wastewater for its minimal effect to the PAO activities in the anaerobic stage during the operation. It was noticed that the biofilm thickness in RBC must be controlled to be less than 1.8 mm in order to achieve more than 70% of P removal with about 60% of N removal. With a settled sewage representing 200 mg/L of COD and 5 mg/L of P, the predicted P content in biofilm was more than 3% and the effluent P concentration was about 1 mg/L. The %P content in biofilm decreased with an increase of influent COD/TP ratios. The COD requirement for anaerobic P release was similar to reported values for the suspended growth system, however, the overall requirement increased with thicker biofilm.
机译:对旋转式生物接触器(REIC)系统进行了操作,并使用了顺序分批反应器进行了改造,以实现从微弱的生活污水中去除生物磷以及去除氮。该研究利用了三个REIC单元,其中两个单元是去除磷和NH4N的主要单元,第三个REIC单元被用作废水的存储,因为它对操作过程中厌氧阶段的PAO活性影响最小。注意到必须将RBC中的生物膜厚度控制为小于1.8 mm,以实现70%以上的P去除率和60%的N去除率。当沉降的污水代表200 mg / L的COD和5 mg / L的P时,生物膜中的预测P含量超过3%,出水P浓度约为1 mg / L。生物膜中的%P含量随着进水COD / TP比的增加而降低。厌氧磷释放的COD要求与悬浮生长系统的报告值相似,但是总体要求随着生物膜的厚度增加而增加。

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