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Removal of Various Contaminations from Drainage by Using Free Water Surface and Submerged Surface Flow Wetland Systems

机译:通过使用游离水表面和浸没表面流动湿地系统从排水中除去各种污染

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This study demonstrates an efficient approach to remove various liquid-phase pollutants from wastewater by using constructed wetland (CW) systems. The plant used in this study was phragmites communis. Two types of CW systems, free water surface flow and submerged surface flow wetlands, are used to compare with their efficiencies for removing chemical oxygen demand (COD), Zn2+, true color, and NH3-N from the drainage. Experimental results confirmed that the CW treatment displays excellent capability for removing the pollutants, i.e., high removal efficiencies. This finding indicates that the growth of phragmites communis enables well-developed root network in CW system, thus leading to a higher adsorption capacity. The growth period of the root network in our case takes about 40 days, forming the bio-membrane. On the basis of the present work, the presence of bio-membrane on the plant root not only enhances but also stabilizes the efficiencies for removing various contaminations from the wastewater.
机译:该研究通过使用构造的湿地(CW)系统,证明了一种高效的方法来除去废水中的各种液相污染物。本研究中使用的植物是Pragmites Communis。两种类型的CW系统,自由水表面流动和浸没表面流动湿地用于与从排水中除去化学需氧量(COD),Zn2 +,真实颜色和NH3-N的效率进行比较。实验结果证实,CW处理显示出优异的去除污染物,即高除去效率。这一发现表明,PhragMites Communis的增长使CW系统中发达的根网络能够,从而导致更高的吸附容量。我们案件中根网络的生长期大约需要40天,形成生物膜。在本作本作的基础上,在植物根系上存在生物膜不仅增强,而且还稳定了从废水中去除各种污染的效率。

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