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Experimental study of a novel hybrid constructed wetland for water reuse and its application in Southern China

机译:一种新型混合人工湿地回用水的试验研究及其在华南地区的应用

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摘要

A new type of hybrid constructed wetland (CW), consisting of both vertical-baffled flow wetland (VBFW) and horizontal subsurface flow wetland (HSFW), has been deployed in Southern China to naturally accelerate the removal of organic matter and nitrogen. The hybrid CW system is characterised by a combination of continuous baffled flow vertical wetland and 'S' pattern horizontal subsurface flow wetland with natural aeration ditches to increase the concentration of dissolved oxygen in the HSFW bed. An internal circulatory system from the HSFW effluent back to the VBFW may optionally be operated to enhance the biological denitrification effect. Cyperus alternifolius is the main macrophyte in the wetland bed. The performance of the hybrid CW was studied with a pilot-scale system and three full-scale systems for municipal sewage treatment in Southern China. The results suggest that this new hybrid CW can achieve removal efficiencies of chemical oxygen demand, suspended solids, ammonia nitrogen, total nitrogen, and total phosphorus of better than 83.6, 95.0, 71.7, 64.5 and 68.1% respectively, with a specific wetland bed area of 0.70-0.93 m ~2 PE ~(-1). The mean effluent concentrations of these parameters would meet the regulatory discharge limits for wastewater treatment systems (GB18918, 2002) and reuse in the context of agricultural irrigation solutions in China.
机译:由垂直折流湿地(VBFW)和水平地下流湿地(HSFW)组成的新型混合人工湿地(CW)已在华南地区部署,以自然地加快有机物和氮的去除。混合式连续水系统的特点是,连续的折流垂直湿地和“ S”型水平地下流湿地与自然通风沟相结合,以增加HSFW床中的溶解氧浓度。从HSFW废水返回到VBFW的内部循环系统可以选择运行,以增强生物反硝化作用。香附子是湿地床上的主要大型植物。通过中国南方城市污水处理的中试规模系统和三个全规模系统对混合式CW的性能进行了研究。结果表明,在特定的湿地床面积下,这种新型杂化连续水能分别实现化学需氧量,悬浮固体,氨氮,总氮和总磷的去除率分别优于83.6%,95.0%,71.7%,64.5%和68.1% 0.70-0.93 m〜2 PE〜(-1)。这些参数的平均废水浓度将达到废水处理系统的规定排放极限(GB18918,2002),并在中国农业灌溉解决方案的范围内进行再利用。

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