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Enhanced total nitrogen removal performance in a modified Orbal oxidation ditch system with internal nitrate recycle

机译:在带有内部硝酸盐再循环的改良Orbal氧化沟系统中提高了总氮去除性能

摘要

A pilot-scale modified Orbal oxidation ditch with internal recycle of the nitrified liquor was developed to significantly enhance total nitrogen (TN) removal through simultaneous nitrification/denitrification (SND) coupled with pre-denitrification under the aerated-anoxic condition. Long-term operational results showed that the highest TN removal efficiency was achieved at very low dissolved oxygen (DO) of 0.15-0.25 mg/L and oxidation-reduction potential (ORP) of 10-40 my within the outer channel. Appropriate internal recycle ratio played a significant role for increasing nitrates reduction within the outer channel, however, excessively high recycle flow deteriorated nitrogen removal instead because of diluted carbon source. At recycle ratio of 9.4, TN removal efficiency further increased to about 87% at optimal DO and pre-denitrification was responsible for TN removal improvement according to nitrogen mass balances. Molecular biology analysis revealed the correlation between variations in nitrogen removal and changes in bacterial community composition. (C) 2013 Elsevier B.V. All rights reserved.
机译:开发了带有硝化液内部循环的中试规模的Orbal氧化沟,通过在充气-缺氧条件下同时进行硝化/反硝化(SND)和预脱氮,显着提高了总氮(TN)的去除。长期的运行结果表明,在外通道内的极低溶解氧(DO)为0.15-0.25 mg / L和10-40 my的氧化还原电位(ORP)时,TN去除效率最高。适当的内部循环比在增加外部通道内硝酸盐的减少方面起着重要作用,但是,过高的循环流量会降低氮的去除,而不是因为碳源稀。在9.4的再循环比下,在最佳DO下,TN去除效率进一步提高到约87%,根据氮质量平衡,预脱氮有助于TN去除的改善。分子生物学分析揭示了脱氮变化与细菌群落组成变化之间的相关性。 (C)2013 Elsevier B.V.保留所有权利。

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