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The performance of the intensified constructed wetlands for organic matter and nitrogen removal: A review

机译:强化人工湿地去除有机物和脱氮性能:综述

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The effects of different aeration strategies including tidal flow (TF), effluent recirculation (ER) and artificial aeration (AA) on performance of vertical flow constructed wetland (VFCW), horizontal flow constructed wetland (HFCW) and hybrid constructed wetland (HCW) are comprehensively and critically reviewed in this paper. The removal efficiencies of nine types of intensified constructed wetlands (CWs) were examined in detail and their mean and standard deviation were estimated at 89 ± 11%, 84 ± 12%, 81 ± 17% and 63 ± 20% for total suspended solids (TSS), chemical oxygen demand (COD), ammonium-nitrogen (NH_4~+-N) and total nitrogen (TN), respectively. From the studied CWs, ER-HCW, TF-HCW, AA-VFCW and ER-VFCW emerged as the four best performing systems. The overall removal efficiency of TSS, COD, NHJ-N and TN by ER-HCW was 98 ± 2%, 85 ± 11%, 83 ± 15% and 73 ± 11%, respectively. Specifically, the ER enhances the interactions between pollutants and micro-organisms, consequently, the efficient removal of NHJ-N and TN has been achieved in ER-HCW. The TF has a positive effect in refreshing the wetland with fresh air to enhance the dissolved oxygen (DO) in the system. In case of AA, intermittent aeration is more effective than continuous aeration, as it facilitates the establishment of aerobic and anaerobic conditions suitable for nitrification and denitrification. Statistical analysis shows that DO, organic loading rate and specific surface area requirement are the most significant factors that influence the performance of intensified CWs.
机译:包括潮汐流量(TF),污水再循环(ER)和人工曝气(AA)在内的不同曝气策略对垂直流人工湿地(VFCW),水平流人工湿地(HFCW)和混合人工湿地(HCW)的性能的影响是本文对此进行了全面而严格的审查。详细检查了九种类型的集约化人工湿地(CW)的去除效率,其总悬浮固体的均值和标准偏差估计为89±11%,84±12%,81±17%和63±20%( TSS),化学需氧量(COD),铵态氮(NH_4〜+ -N)和总氮(TN)。从研究的CW中,ER-HCW,TF-HCW,AA-VFCW和ER-VFCW成为表现最好的四个系统。 ER-HCW去除TSS,COD,NHJ-N和TN的总效率分别为98±2%,85±11%,83±15%和73±11%。具体而言,ER增强了污染物与微生物之间的相互作用,因此,在ER-HCW中实现了NHJ-N和TN的有效去除。 TF在用新鲜空气刷新湿地以增强系统中的溶解氧(DO)方面具有积极作用。对于AA,间歇曝气比连续曝气更有效,因为它有助于建立适合硝化和反硝化的好氧和厌氧条件。统计分析表明,溶解氧,有机物上样速率和比表面积要求是影响强化连续波性能的最重要因素。

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