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首页> 外文期刊>Biochemical Engineering Journal >The combined effect of dissolved oxygen and COD/N on nitrogen removal and the corresponding mechanisms in intermittent aeration constructed wetlands
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The combined effect of dissolved oxygen and COD/N on nitrogen removal and the corresponding mechanisms in intermittent aeration constructed wetlands

机译:溶解氧和COD / N对氮气去除的综合作用及间歇通气构建湿地的相应机制

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摘要

In this study, the combined effect of dissolved oxygen (DO) and COD/N on nitrogen (N) removal as well as the corresponding mechanisms were investigated in aerated constructed wetlands (CWs). At each investigated COD/N level, the ammonium removal efficiency increased as DO concentration increased. However, the highest total N removal efficiency occurred at different DO concentration at each COD/N level. The results of functional gene analysis and cyclic N profile studies indicated that DO supply and COD/N influence the N removal performance, which is not only exert a direct effect on nitrification-denitrification process, but also change N removal pathway in intermittent aerated CWs. At a relatively high influent COD/N of 20, the simultaneous nitrification and denitrification (SND) via nitrite was almost the exclusive N removal pathway at all investigated DO concentration. With the decrease of COD/N from 20 to 2 at DO of similar to 1.8, similar to 3.5 and similar to 6.0 mg/L, SND efficiency all decreased, however, its decreasing rate was much higher at relatively high DO level of similar to 6.0 mg/L than that at DO levels of similar to 1.8 and similar to 3.5 mg/L. In comparison, a simultaneously partial nitrification, anammox and denitrification was established at DO of similar to 0.8 mg/L along with reducing influent COD/N.
机译:在该研究中,在充气构建的湿地(CWS)中研究了溶解氧(DO)和COD / N对氮气(N)除去以及相应机制的综合作用。在每次调查的COD / N水平时,随着浓度的增加而增加,去除效率增加。然而,在每个COD / N水平下,在不同的N个去除效率中发生最高的N个去除效率。功能基因分析和循环N型材研究结果表明,供应和COD / N会影响N去除性能,这不仅对硝化反硝化过程产生了直接影响,而且还改变了间歇性充气CW的N去除途径。在20的相对高的影响核/ N中,通过亚硝酸盐同时硝化和脱氮(SND)几乎是所有研究的浓度的独占N去除途径。随着20至2的鳕鱼/ n的减少,类似于1.8,类似于3.5,类似于6.0 mg / L,SND效率均降低,但其相对较高的速度与6.0 mg / L比在与1.8类似的水平,类似于3.5 mg / L.相比之下,在类似于0.8mg / L的情况下建立同时部分硝化,厌氧和反硝化以及还原流入焦点/氮。

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