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Simulation of closed double-sludge retention time anoxic-oxic process in wastewater treatment: case study for a utility model process

机译:封闭式双污泥停留时间缺氧-含氧工艺在废水处理中的模拟:以实用新型工艺为例

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The 'closed double-sludge retention time anoxic-oxic (SRT AO) process' is a utility model designed by the Shanghai Urban Construction Design and Research Institute. It can quantitatively control the nitrification level by adjusting wastewater distribution and mixed sludge return during wastewater treatment, and can thus considerably reduce construction investment and operation costs. However, mixed sludge return from the sedimentation tank may dilute the concentration of nitrobacteria because the heterotrophic bacteria propagate faster. In this paper, the closed double-SRT AO process was modelled and simulated based on its application at the Zhuyuan Second Wastewater Treatment Plant (WWTP). The distribution ratio was found to have a significant influence on the nitrobacteria's concentration but does not eliminate the existence of nitrobacteria in the system. Extension of sludge age enhanced the heterotrophic bacteria concentration and to a greater extent the nitrobacteria concentration, thus attenuated the dilution of nitrobacteria. Mixed liquid recycling showed little effect on nitrobacteria concentration. The closed double-SRT AO process in Zhuyuan Second WWTP had enough capacity for complete nitrification, but the shortage of organic matter in the influent impeded the nitrogen removal.
机译:“封闭式双污泥截留时间缺氧(SRT AO)工艺”是由上海市城市建设设计研究院设计的实用新型。通过调节废水处理过程中的废水分布和混合污泥回流,可以定量控制硝化水平,从而可以大大减少建设投资和运营成本。但是,由于异养细菌传播得更快,从沉淀池返回的混合污泥可能会稀释硝化细菌的浓度。本文基于密闭式双SRT AO工艺在竹园第二污水处理厂(WWTP)中的应用进行了建模和仿真。发现分布比对硝化细菌的浓度有显着影响,但不能消除系统中硝化细菌的存在。污泥年龄的延长提高了异养细菌的浓度,并在更大程度上增加了硝化细菌的浓度,从而减弱了硝化细菌的稀释度。混合液体再循环对硝化细菌浓度影响很小。竹园第二污水处理厂的封闭式双SRT AO工艺有足够的能力完全硝化,但进水口有机物的缺乏阻碍了脱氮。

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