首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Pathway governing nitrogen removal in artificially aerated constructed wetlands: Impact of aeration mode and influent chemical oxygen demand to nitrogen ratios
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Pathway governing nitrogen removal in artificially aerated constructed wetlands: Impact of aeration mode and influent chemical oxygen demand to nitrogen ratios

机译:治疗人工充气的湿地中的氮气去除的途径:曝气模式的影响和影响的化学氧需求对氮比

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摘要

This study aimed at assessing the influence of aeration mode and influent COD/N ratio on nitrogen removal in constructed wetlands (CWs). The results showed that a simultaneous partial nitrification, anammox and denitrification (SNAD) process was established in the intermittent aerated V1. While nitrogen removal pathway gradually changed from partial nitrification-denitrification to complete nitrification-denitrification along with reducing COD/N ratio in the continuous limited aerated V2. Effective inhibition of NOBs under intermittent aeration conditions, good retention of anammox bacteria biomass and much faster depletion of COD prior to substantial NH4+-N conversion jointly led to the successful achievement of stable SNDA process with elevated influent COD/N ratios in V1. Furthermore, the presence of SNAD ensured a robust ammonium (84-92%) and TN (80-91%) removal efficiency in V1 under varying COD loading rates. In contrast, the TN removal efficiency decreased rapidly along with the reducing influent COD/N ratios in V2.
机译:本研究旨在评估曝气模式和流入鳕鱼COD / N比对构造湿地(CWS)中氮去除的影响。结果表明,在间歇性气化V1中建立了同时列的部分硝化,厌氧和脱氮(蛇醛)方法。虽然氮去除途径从部分硝化碳脱氧途径逐渐变化以完全硝化 - 反硝化以及在连续有限的曝气V2中降低COD / N比。在间歇曝气条件下有效抑制NOB的抑制,伴随厌氧菌细菌生物量的良好保留以及在大量NH4 + -N + -N转换之前的鳕鱼的速度要快得多,并在v1中成功实现稳定的SNDA过程,v1中的电影焦点/ n比例升高。此外,在不同的COD加载速率下,SNAD的存在确保了V1中的稳健铵(84-92%)和TN(80-91%)去除效率。相反,TN去除效率随着V2中的还原流入核/ N比率而迅速降低。

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