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Impacts of carbon source addition on denitrification and phosphorus uptake in enhanced biological phosphorus removal systems

机译:添加碳源对增强型生物除磷系统中反硝化作用和磷吸收的影响

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In this study, simultaneous denitrification and phosphorus (P) removal were investigated in batch tests using nitrified mixed liquor and secondary wastewater influent from a full-scale treatment plant and different levels of acetate and propionate as supplemental carbon sources. Without supplemental carbon source, denitrification occurred at low rate and P release and P uptake was negatively affected (i.e., P removal of only 59.7%). When acetate and propionate were supplied, denitrification and P release occurred simultaneously under anoxic conditions. For acetate and propionate at a C/N stoichiometric ratio of 7.6, P release was negatively affected by denitrification. For acetate, the percent P removal and denitrification were very similar for C/N ratios of 22 (5X stoichiometric) and 59 (10X stoichiometric). For propionate, both percent P removal and denitrification deteriorated for C/N ratios of 22 (5X stoichiometric) and 45 (10X stoichiometric). It was observed that carbon source added in excess to stoichiometric ratio was consumed in the aerobic zone, but P was not taken up. This implies that PAO bacteria may utilize the excess carbon source in the aerobic zone rather than their polyhydroxyalkanoate (PHA) reserves, thereby promoting deterioration of the system.
机译:在这项研究中,使用硝化混合液和来自规模处理厂的二次废水进水,并以不同水平的乙酸盐和丙酸盐作为补充碳源,在分批测试中研究了同时反硝化和除磷的方法。在没有补充碳源的情况下,反硝化作用发生率较低,并且磷的释放和磷的吸收受到不利影响(即磷的去除率仅为59.7%)。当提供乙酸盐和丙酸盐时,在缺氧条件下同时发生反硝化和磷释放。对于C / N化学计量比为7.6的乙酸盐和丙酸盐,反硝化对P的释放产生负面影响。对于乙酸盐,C / N比为22(化学计量比为5倍)和59(化学计量比为10倍)的P去除率和反硝化率非常相似。对于丙酸酯,C / N比为22(化学计量比为5倍)和45(化学计量比为10倍)时,P去除率和反硝化率均下降。观察到在需氧区中消耗了超过化学计量比添加的碳源,但是没有吸收P。这意味着PAO细菌可能会利用好氧区域中的过量碳源,而不是利用其聚羟基链烷酸酯(PHA)储备,从而促进系统的恶化。

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