首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >The effect and biological mechanism of COD/TN ratio on nitrogen removal in a novel upflow microaerobic sludge reactor treating manure-free piggery wastewater
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The effect and biological mechanism of COD/TN ratio on nitrogen removal in a novel upflow microaerobic sludge reactor treating manure-free piggery wastewater

机译:新型上流式好氧污泥反应器处理无粪猪废水中COD / TN比对脱氮的影响及其生物学机制

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摘要

A novel upflow microaerobic sludge reactor (UMSR) was constructed to treat manure-free piggery wastewater with high NH4+-N concentration and low COD/TN ratio, and the effect and biological mechanism of COD/TN ratio on nitrogen removal were investigated at a constant hydraulic retention time of 8 h and 35 degrees C. The results showed that the UMSR could treat the wastewater with a better synchronous removal of COD, NH4+-N and TN. The microaerobic UMSR allowed nitrifiers, and heterotrophic and autotrophic denitrifiers to thrive in the flocs, revealing a multiple nitrogen removal mechanism in the reactor. Both the nitrifiers and denitrifiers would be restricted by an influent COD/TN ratio more than 0.82, resulting in a decrease of TN removal in the UMSR. To get a TN removal over 80% with a TN load removal above 0.86 kg/(m(3).d) in the UMSR, the influent COD/TN ratio should be less than 0.70. (C) 2016 Elsevier Ltd. All rights reserved.
机译:构建了一种新型的上流式微氧污泥反应器(UMSR),用于处理NH4 + -N浓度高,COD / TN比低的无肥猪场废水,并在恒定的条件下研究了COD / TN比对脱氮的影响和生物学机理水力停留时间为8小时和35摄氏度。结果表明,UMSR可以更好地同步去除COD,NH4 + -N和TN来处理废水。微需氧的UMSR使硝化器,异养和自养反硝化器在絮凝物中蓬勃发展,从而揭示了反应器中的多种脱氮机理。硝化器和反硝化器都将受到进水COD / TN比大于0.82的限制,导致UMSR中TN去除量降低。为了使TNSR中的TN去除率超过80%,而UMSR中的TN负载去除率大于0.86 kg /(m(3).d),进水的COD / TN比应小于0.70。 (C)2016 Elsevier Ltd.保留所有权利。

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