首页> 外文期刊>Chemical engineering journal >Advanced nitrogen and phosphorus removal in the pre-denitrification anaerobic/anoxic/aerobic nitrification sequence batch reactor (pre-A(2)NSBR) treating low carbon/nitrogen (C/N) wastewater
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Advanced nitrogen and phosphorus removal in the pre-denitrification anaerobic/anoxic/aerobic nitrification sequence batch reactor (pre-A(2)NSBR) treating low carbon/nitrogen (C/N) wastewater

机译:先进的氮气和磷去除在脱硝酸前厌氧/缺氧/有氧硝化序列批量反应器(预氮(2)NSBR)处理低碳/氮气(C / N)废水

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摘要

In order to treat domestic wastewater with high ammonia but low carbon source (low C/N ratio), a novel two sludge pre-A(2)NSBR system (anaerobic/anoxic/aerobic nitrification) was firstly developed by exchanging the sequence of aerobic nitrification and anoxic phase of the conventional A(2)NSBR process (anaerobic/ aerobic nitrification/anoxic). The system was operated for 186 days to treat real domestic wastewater with low carbon/nitrogen (C/N = 4.03). Anoxic duration was adjusted and post-aeration phase was added to enhance nitrogen and phosphorus removal. Results indicate that adding post-aeration phase is indispensable to achieve enhanced phosphorus removal, the pre-A(2)NSBR system achieved a high denitrifying phosphorus removal efficiency of 96.86% with efficient utilization of limited carbon source. Specifically, the ammonia effluent was 0.46 mg/L, which solved the bottleneck problem of high ammonia residues in conventional A(2)NSBR process. The fluorescence in situ hybridization (FISH) results showed that PAOs was enriched and GAOs was inhibited in the A(2)SBR, nitrifiers also became dominant in the N-SBR. Moreover, the profiles variation of real-time online indicator such as pH, ORP and DO were demonstrated closely related with the nutrient removal performance, and based on this, it is possible or expected to establish the real time control strategy in the future. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了用高氨治疗国内废水,但低碳源(低C / N比),首先通过交换有氧序列来开发一种新型的两个污泥前(2)NSBR系统(厌氧/缺氧/有氧硝化)。常规A(2)NSBR过程的硝化和缺氧相(厌氧/有氧硝化/缺氧)。该系统运营186天,可用低碳/氮气治疗真正的国内废水(C / N = 4.03)。调节缺氧持续时间,加入曝气后阶段以增强氮气和磷去除。结果表明,添加后曝光阶段是必不可少的,以实现增强的磷去除,Pre-A(2)NSBR系统实现了96.86%的高反向磷去除效率,有效利用有限的碳源。具体地,氨水污水为0.46mg / L,该常规A(2)NSBR过程中的高氨残留物的瓶颈问题解决了。原位杂交(鱼类)结果的荧光表明,富集的PAOS在A(2)SBR中抑制了GaOS,Nirrifirs也在N-SBR中显着。此外,实时在线指示符如pH,ORP和确实的谱变化与营养去除性能密切相关,并基于此,可以或期望在未来建立实时控制策略。 (c)2016年Elsevier B.v.保留所有权利。

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