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Foaming control by automatic carbon source adjustment using an ORP profile in sequencing batch reactors for enhanced nitrogen removal in swine wastewater treatment

机译:在顺序批处理反应器中使用ORP曲线通过自动碳源调节进行泡沫控制,以提高猪废水处理中的氮去除率

摘要

Incomplete denitrification and ammonia accumulation were found to cause proliferation of filamentous microorganisms in sequencing batch reactors (SBRs) for swine wastewater treatment. Foaming was observed in response to the accumulation of 115.2 and 12.2 mg/L of nitrate and ammonia, respectively. The mixed liquor suspended solids (MLSS) level in SBRs was decreased to 2,000 mg/L and the suspended solids in the effluent reached 200 mg/L when foaming appeared. However, the use of swine waste as an external carbon source for enhanced biological nitrogen removal was found to effectively control the foaming caused by filamentous microorganisms. Therefore, an optimum strategy for the addition of swine waste was designed using integrated real-time control to provide pulse input control of slurry based on the "nitrate knee" in the oxidation-reduction potential profile. In this case, the MLSS concentration was maintained at an average value of approximately 7,550 mg/L, while the SS in the effluent was less than 30 mg/L.
机译:发现不完全的反硝化作用和氨气的积累会导致用于猪废水的测序间歇反应器(SBR)中的丝状微生物繁殖。观察到起泡分别对应于硝酸盐和氨的115.2和12.2 mg / L的积累。当出现泡沫时,SBR中的混合液悬浮固体(MLSS)含量降低至2,000 mg / L,流出物中的悬浮固体达到200 mg / L。然而,发现使用猪排泄物作为外部碳源以增强生物脱氮作用可以有效地控制由丝状微生物引起的泡沫。因此,使用集成的实时控制设计了一种添加猪粪的最佳策略,以基于氧化还原电势曲线中的“硝酸盐膝盖”提供对浆液的脉冲输入控制。在这种情况下,MLSS浓度保持在约7,550 mg / L的平均值,而废水中的SS小于30 mg / L。

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