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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Reuse of drinking water treatment residuals as a substrate in constructed wetlands for sewage tertiary treatment
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Reuse of drinking water treatment residuals as a substrate in constructed wetlands for sewage tertiary treatment

机译:重复利用饮用水处理残留物作为人工湿地中的底物,以进行污水三次处理

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摘要

This work investigated the feasibility of reusing drinking water treatment residuals (WTR) as a substrate in constructed wetlands (WTR-CW) to treat secondary effluent at short hydraulic retention times (HRTs) (1-3 d). The results indicated that both continuous flow operation (CFCW) and tidal flow operation (TFCW) can achieve satisfactory removal of total nitrogen (TN), total phosphorus (TP), chemical oxygen demand and suspended solids although the ammonia nitrogen concentration of the CFCW effluent increased slightly. The WTR was found to be beneficial for denitrification, and the mean nitrate removal rates of CFCW and TFCW were 3.45 and 2.47 g N/m3 d, respectively. The TP removal efficiency of the two WTR-CWs still remained at 98% after 260 d of operation, and the lifetime regarding P saturation was estimated to be longer than 10 years. The HRT played a more significant role in TN removal, and the most optimal and stable TN removal (>76%) was obtained at 3 d HRT. Moreover, the leaching of Fe and Al from the two WTR-CWs was minor. Based on regulations, it is feasible to reuse the WTR as a substrate in constructed wetlands for the purpose of sewage tertiary treatment and waste recycling.
机译:这项工作研究了将饮用水处理残留物(WTR)作为人工湿地(WTR-CW)中的基质再利用以在较短的水力停留时间(HRT)(1-3 d)内处理二次废水的可行性。结果表明,尽管CFCW废水的氨氮浓度很高,但连续流操作(CFCW)和潮汐流操作(TFCW)均可实现令人满意的总氮(TN),总磷(TP),化学需氧量和悬浮固体的去除。略有增加。发现WTR有利于反硝化,CFCW和TFCW的平均硝酸盐去除率分别为3.45和2.47 g N / m3 d。在运行260 d后,两个WTR-CW的TP去除效率仍然保持在98%,并且估计与P饱和有关的寿命超过10年。 HRT在TN去除中起着更重要的作用,并且在3 d HRT时获得了最理想,最稳定的TN去除(> 76%)。此外,从两个WTR-CW中浸出的Fe和Al很少。根据法规,将WTR用作人工湿地中的底物以进行污水三次处理和废物回收是可行的。

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