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Plant-wide (BSM2) evaluation of reject water treatment with a SHARON-Anammox process

机译:使用SHARON-Anammox工艺对全厂废水(BSM2)进行评估

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In wastewater treatment plants (WWTPs) equipped with sludge digestion and dewatering systems, the reject water originating from these facilities contributes significantly to the nitrogen load of the activated sludge tanks, to which it is typically recycled. In this paper, the impact of reject water streams on the performance of a WWTP is assessed in a simulation study, using the Benchmark Simulation Model no. 2 (BSM2), that includes the processes describing sludge treatment and in this way allows for plant-wide evaluation. Comparison of performance of a WWTP without reject water with a WWTP where reject water is recycled to the primary clarifier, i.e. the BSM2 plant, shows that the ammonium load of the influent to the primary clarifier is 28% higher in the case of reject water recycling. This results in violation of the effluent total nitrogen limit. In order to relieve the main wastewater treatment plant, reject water treatment with a combined SHARON-Anammox process seems a promising option. The simulation results indicate that significant improvements of the effluent quality of the main wastewater treatment plant can be realized. An economic evaluation of the different scenarios is performed using an Operating Cost Index (OCI).
机译:在配备了污泥消化和脱水系统的废水处理厂(WWTP)中,来自这些设施的废水对活性污泥池的氮负荷有很大贡献,通常将其回收利用。在本文中,使用基准模拟模型No.6(模拟)评估了模拟研究中对废水流对污水处理厂性能的影响。 2(BSM2),其中包括描述污泥处理的过程,并以此方式对整个工厂进行评估。不带废水的污水处理厂与将废水再循环到一级澄清池(即BSM2工厂)的污水处理厂的性能比较表明,在废水再循环的情况下,流入一级澄清池的进水铵含量高出28%。 。这违反了废水的总氮限制。为了减轻主要废水处理厂的负担,采用SHARON-Anammox组合工艺拒绝水处理似乎是一个有前途的选择。仿真结果表明,可以实现主要废水处理厂废水质量的显着改善。使用运营成本指数(OCI)对不同情况进行经济评估。

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