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Horizontal Flow Constructed Wetland for Greywater Treatment and Reuse: An Experimental Case

机译:用于灰水处理和回用的水平流人工湿地:一个实验案例

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摘要

In the coming years, water stress is destined to worsen considering that the consumption of water is expected to increase significantly, and climate change is expected to become more evident. Greywater (GW) has been studied as an alternative water source in arid and semiarid zones. Although there is no single optimal solution in order to treat GW, constructed wetlands proved to be effective. In this paper, the results of the treatment of a real GW by a horizontal flow constructed wetland (HFCW) for more than four months are shown. In the preliminary laboratory-scale plant, , and were tested separately and showed very similar results. In the second phase, pilot-scale tests were conducted to confirm the performance at a larger scale and evaluate the influence of hydraulic retention time, obtaining very high removal yields on turbidity (>92%), total suspended solids (TSS) (>85%), chemical oxygen demand (COD) (>89%), and five-day biological oxygen demand (BOD ) (>88%). Based on the results of the pilot-scale HFCW, a comparison with international recommendations by World Health Organization and European Union is discussed.
机译:考虑到水的消耗量预计将显着增加,并且气候变化将变得更加明显,在未来几年中,水的压力注定会加剧。格雷沃特(GW)已被研究为干旱和半干旱地区的替代水源。尽管没有单一的最佳解决方案来治疗GW,但人工湿地被证明是有效的。在本文中,显示了用水平流人工湿地(HFCW)处理四个月以上的实际GW的结果。在初步实验室规模的工厂中,,和分别进行了测试,结果非常相似。在第二阶段,进行了中试规模的测试,以确认较大规模的性能并评估水力停留时间的影响,获得非常高的去除率,以提高浊度(> 92%),总悬浮固体(TSS)(> 85 %),化学需氧量(COD)(> 89%)和五天生物需氧量(BOD)(> 88%)。根据试点规模氢氟碳化合物的结果,讨论了与世界卫生组织和欧洲联盟的国际建议的比较。

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