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Effects of hydraulic loading rate and aeration mode on nitrogen removal and nitrogen functional gene abundances in subsurface wastewater infiltration systems

机译:液压加载速率和曝气模式对地下废水渗透系统中氮去除和氮功能基因丰度的影响

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摘要

Matrix dissolved oxygen, nitrogen removal and nitrogen functional gene abundances in two artificial aeration modes, continuous aeration (CA) and intermittent aeration (IA), in subsurface wastewater infiltration systems (SWISs) under different hydraulic loading rates (HLRs) were investigated. Aeration not only successfully created aerobic conditions at 50 cm depth, but also did not change anoxic or anaerobic conditions at 80 and 110 cm depths. Meanwhile, aeration significantly enhanced chemical oxygen demand, NH4+ -N, and total nitrogen (TN) removal and the enrichment of nitrogen removal functional genes (amoA, nxrA, napA, narG, nirK and qnorB) compared to the non-aerated SWIS, especially for high HLRs. IA SWIS (79.7%-85.8%) had a better performance on TN removal compared with CA SWIS (73.8%-82.2%) when the HLRs ranged from 0.06 to 0.3 m(3)/(m(2) d). Intermittent aeration is a sensible strategy to achieve high HLR, good nitrogen removal performance and comparatively low operation cost for SWISs.
机译:研究了基质溶解的氧,氮去除和氮功能基因在不同液压加载率(HLRS)下的地下废水渗透系统(瑞士)中的连续通气(CA)和间歇通气(IA)中的氮功能基因丰度。通气不仅在50厘米的深度下成功创建了有氧条件,而且在80和110厘米的深度下也没有改变缺氧或厌氧条件。同时,与非充气的SWIS相比,曝气显着增强了化学需氧量,NH4 + -N和总氮(TN)去除和富含氮去除功能基因(AmoA,NXRA,NaPa,Narg,Nirk和QnOb)的富集,特别是高HLR。 IA SWIS(79.7%-85.8%)在与CA SWIS相比的情况下对TN除去更好的性能(73.8%-82.2%),当HLR为0.06至0.3米(3)/(m(2)d)。间歇通气是一种明智的策略,可以实现高HLR,良好的氮气去除性能和瑞士运营成本相对较低。

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