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Effects of algal ponds on vertical flow constructed wetlands under different sewage application techniques

机译:不同污水处理技术下藻塘对垂直流人工湿地的影响

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Algae can increase dissolved oxygen (DO) in water body by photosynthesis and affect the wastewater treatment performance of constructed wetlands (CWs). Two laboratory-scale vertical flow constructed wetlands combined with algal pond were designed and constructed to treat simulated wastewater in replicated experiments. The two units (half-vertical subsurface flow constructed wetlands and shallow algal pond-vertical subsurface flow constructed wetlands) could decrease chemical oxygen demand (COD), total nitrogen (TN), and total phosphorus (TP) at low temperature condition (0-10 degrees C). The study showed that algal pond significantly improved TN and TP removal by 26.2-30.6% and 16.5-21.2% in CWs, respectively. The COD removal was only increased by 16.8-20.2% probably due to microbial carbon source accumulation originated from dead algae and algal debris. The study suggested that the designed new system with algal pond might be a green water treatment solution. (C) 2016 Elsevier B.V. All rights reserved.
机译:藻类可以通过光合作用增加水体中的溶解氧(DO),并影响人工湿地(CWs)的废水处理性能。设计并建造了两个实验室规模的垂直流人工湿地与藻类池塘相结合,以处理重复实验中的模拟废水。这两个单元(半垂直地下流动人工湿地和浅藻类池塘垂直地下流动人工湿地)可以在低温条件下(0-℃)降低化学需氧量(COD),总氮(TN)和总磷(TP)。 10摄氏度)。研究表明,藻类池塘对连续水体的总氮和总磷去除率分别提高了26.2-30.6%和16.5-21.2%。 COD去除仅增加了16.8-20.2%,这可能是由于死海藻和藻屑产生的微生物碳源积累所致。研究表明,设计的带有藻池的新系统可能是一种绿色的水处理解决方案。 (C)2016 Elsevier B.V.保留所有权利。

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