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Enhancement of total nitrogen removal through effluent recirculation and fate of PPCPs in a hybrid constructed wetland system treating urban wastewater

机译:通过杂交构建湿地系统对处理城市废水的杂交构建湿地系统PPCP的流出再循环和命运的增强

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摘要

The effect of effluent recirculation on the removal of total nitrogen (TN) and eight pharmaceuticals and personal care products (PPCPs) was evaluated during 9 months in an experimental hybrid constructed wetland (CW) system applied in the treatment of urban wastewater. An Imhoff tank was followed by three stages of CWs (two 1.5-m2 vertical subsurface flow (VF) beds alternating feed-rest cycles, a 2-m2 horizontal (HF) and a 2-m2 free water surface (FWS) wetland in series). A fraction of the final effluent was recycled back to the Imhoff tank with a recirculation rate of 50% (hydraulic loading rate = 0.37 m d- 1). The system's performance varied throughout the study. In Period I (summer) consistently high load removal efficiencies of TN (89 ± 5%) and a removal rate of 6.6 ± 1.4 g TN m- 2 d- 1 were exhibited. In Period II (fall), the poor performance of the FWS during the senescence of macrophytes caused a large increase in organic matter, solids and nutrient concentrations, drastically deteriorating water quality. The determination of PPCPs was conducted during this period. Recalcitrant compounds, namely sulfamethoxazole, carbamazapine, TCEP and sucralose were negligibly removed in all CWs. However, noteworthy was the ˜ 30% removal of sucralose in the VF wetland. Caffeine (80%) and fluoxetine (27%) showed similar elimination rates in both VF and HF units, whereas trimethoprim and DEET were significantly better removed in the VF than in the HF. The concentration of the four latter compounds showed a severe increase in the FWS, indicating possible desorption from the sediment/biomass during adverse conditions. Harvesting of the aboveground biomass in this unit returned the system's performance back to normality (Period III), achieving 77 ± 7% TN removal despite the winter season, proving effluent recirculation as an effective strategy for TN removal in hybrid CW systems when stringent restrictions are in place.
机译:在适用于城市废水的实验杂交构建的湿地(CW)系统中,在9个月内评估了流出物再循环对除去总氮(TN)和八种药物和个人护理产品(PPCP)的影响。 IMHOFF坦克之后是CWS的三个阶段(两个1.5m2垂直地下流量(VF)床交替的饲料休息循环,串联的2-M2水平(HF)和2平方米的自由水表面(FWS)湿地)。将最终流出物的一部分再循环回到IMHOFF罐中,再循环速率为50%(液压加载率= 0.37M D-1)。系统在整个研究中的性能变化。在时期(夏季)在TN(89±5%)的高负荷去除效率和6.6±1.4g TN m-2 d-1的去除率中始终如一。在期间II(秋季)中,FWS在宏粒衰老期间的FWS性能差异导致有机质,固体和营养浓度大大增加,水质急剧恶化。在此期间进行PPCP的测定。在所有CWS中可忽略荷兰磺基甲氧唑,即磺胺甲恶唑,氨基甲恶唑,氨基甲嘧啶,TCEP和三氯蔗糖。然而,值得注意的是VF湿地中〜30%的蔗糖去除。咖啡因(80%)和氟西汀(27%)显示VF和HF单位中的相似消除率,而Trimethokim和Deet在VF中显着更好地除去比HF。四种后一种化合物的浓度显示出FWS的严重增加,表明在不利条件下从沉积物/生物质中解吸。在本机中收获地上生物量恢复了系统的性能恢复正常性(期间III),尽管冬季,但在严格限制的情况下,证明流出物再循环是在混合CW系统中去除的有效策略到位。

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