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Intensified nitrogen removal of constructed wetland by novel integration of high rate algal pond biotechnology

机译:通过高效率藻类池生物技术的新型整合来强化人工湿地的脱氮

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High rate algal pond (HRAP) was combined with constructed wetland (CW) to intensify nitrogen removal through optimizing nitrification and denitrification. Nitrification and denitrification process mainly depends on the oxygen content and carbon source level in CWs. Algal biomass was enriched in HRAP, and dissolved oxygen (DO) concentration was increased via photosynthesis. Algal debris increased COD as degradable bioresource. The results showed that HRAP-CW hybrid systems effectively promoted the nitrogen removal performance due to rich DO and COD. The extension of hydraulic retention time in HRAP significantly improved NH4-N and TN removals by 10.9% and 11.1% in hybrid systems, respectively. The highest NH4-N and TN removals in hybrid systems respectively reached 67.2% and 63.5%, which were significantly higher than those in single CW. The study suggested that the hybrid system had the application potentials in nitrogen removal from wastewater. (C) 2016 Elsevier Ltd. All rights reserved.
机译:高速率藻池(HRAP)与人工湿地(CW)相结合,通过优化硝化作用和反硝化作用来增强除氮能力。硝化和反硝化过程主要取决于化学废物中的氧含量和碳源水平。藻类生物质富含HRAP,并且通过光合作用提高了溶解氧(DO)的浓度。藻屑增加了COD作为可降解的生物资源。结果表明,由于富含DO和COD,HRAP-CW混合系统有效地提高了脱氮性能。在混合动力系统中,HRAP中水力停留时间的延长分别显着提高了NH4-N和TN去除的10.9%和11.1%。混合系统中最高的NH4-N和TN去除率分别达到67.2%和63.5%,明显高于单个连续波。研究表明,该混合系统在废水脱氮中具有应用潜力。 (C)2016 Elsevier Ltd.保留所有权利。

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