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Denitrifying phosphorus removal in a step-feed CAST with alternating anoxic-oxic operational strategy

机译:分步进料CAST中的脱氮除磷和交替缺氧-缺氧操作策略

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A bench-scale cyclic activated sludge technology (CAST) was operated to study the biological phosphorus removal performance and a series of batch tests was carried out to demonstrate the accumulation of denitrifying polyphosphate-accumulating organisms (DNPAOs) in CAST system. Under all operating conditions, step-feed CAST with enough carbon sources in influent had the highest nitrogen and phosphorus removal efficiency as well as good sludge settling performance. The average removal rate of COD, (NH_4)~+-N, (PO_4)~(3-)-P and total nitrogen (TN) was 88.2%, 98.7%, 97.5% and 92.1%, respectively. The average sludge volume index (SVI) was 133 mL/g. The optimum anaerobic/aerobic/anoxic (AOA) conditions for the cultivation of DNPAOs could be achieved by alternating anoxic/oxic operational strategy, thus a significant denitrifying phosphorus removal occurred in step-feed CAST. The denitrification of (NO_x)~--N completed quickly due to step-feed operation and enough carbon sources, which could enhance phosphorus release and further phosphorus uptake capability of the system. Batch tests also proved that polyphosphate-accumulating organisms (PAOs) in the step-feed process had strong denitrifying phosphorus removal capacity. Both nitrate and nitrite could be used as electron acceptors in denitrifying phosphorus removal. Low COD supply with step-feed operation strategy would favor DNPAOs accumulation.
机译:使用台式规模的循环活性污泥技术(CAST)来研究生物除磷性能,并进行了一系列分批测试以证明CAST系统中反硝化聚磷酸盐积累生物(DNPAOs)的积累。在所有操作条件下,进水中具有足够碳源的分步进料CAST具有最高的氮和磷去除效率以及良好的污泥沉降性能。 COD,(NH_4)〜+ -N,(PO_4)〜(3-)-P和总氮(TN)的平均去除率分别为88.2%,98.7%,97.5%和92.1%。平均污泥体积指数(SVI)为133 mL / g。 DNPAOs的最佳厌氧/好氧/缺氧(AOA)条件可以通过交替的缺氧/有氧操作策略来实现,因此分步进料CAST中发生了明显的反硝化除磷。 (NO_x)〜--N的反硝化由于分步进料操作和足够的碳源而迅速完成,这可以增强磷的释放并进一步提高系统的磷吸收能力。分批测试还证明了分步进料过程中的聚磷酸盐积累生物(PAO)具有很强的反硝化除磷能力。硝酸盐和亚硝酸盐都可用作脱氮除磷的电子受体。采用步进进料操作策略的低COD供应量将有利于DNPAO的积累。

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