首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Emerging organic contaminant removal in a full-scale hybrid constructed wetland system for wastewater treatment and reuse
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Emerging organic contaminant removal in a full-scale hybrid constructed wetland system for wastewater treatment and reuse

机译:大型混合人工湿地系统中新兴有机污染物的去除,用于废水处理和回用

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A full-scale hybrid constructed wetland (CW) system based on three stages of different wetlands configurations showed to be a very robust ecotechnology for domestic wastewater treatment and reuse in small communities. It consisted of a 317-m(2) vertical subsurface flow (VF), a 229-m(2) horizontal subsurface flow (HF), and a 240-m(2) free water surface (FWS) CWs operating in series. VF and HF wetlands were planted with Phragmites australis and the FWS contained a mixture of plant species. An excellent overall treatment performance was exhibited on the elimination of conventional water quality parameters (98-99% average removal efficiency for TSS, BOD5 and NH4-N; n = 8), and its final effluent proved to comply with existing Spanish regulations for various reuse applications. The removal of studied emerging contaminants, which included various pharmaceuticals, personal care products and endocrine disruptors, was also very high (above 80% for all compounds), being compound dependent (n = 8). The high rates were achieved due to high temperatures as well as the differing existing physico-chemical conditions occurring at different CW configurations, which would allow for the combination and synergy of various abiotic/biotic removal mechanisms to occur (e.g. biodegradation, sorption, volatilization, hydrolysis, photodegradation). While aerobic metabolic pathways and solids retention are enhanced in the VF bed, other removal mechanisms such as anaerobic biodegradation and sorption would predominate in the HF bed. At last, photodegradation through direct sunlight exposure, and less importantly, sorption onto organic matter, seem to take an active part in organic contaminant removal in the FWS wetland. (C) 2014 Elsevier B.V. All rights reserved.
机译:基于三个阶段的不同湿地配置的全尺寸混合人工湿地(CW)系统被证明是一种非常强大的生态技术,适用于小型社区的生活污水处理和回用。它由317 m(2)的垂直地下水流(VF),229 m(2)的水平地下水流(HF)和240 m(2)的自由水面(FWS)CW串联运行组成。 VF和HF湿地上种植了芦苇,而FWS包含了多种植物物种。在消除常规水质参数(TSS,BOD5和NH4-N的平均去除效率为98-99%; n = 8)方面表现出了优异的总体处理性能,并且其最终废水证明符合各种西班牙现行法规重用应用程序。研究的新兴污染物(包括各种药物,个人护理产品和内分泌干扰物)的去除率也很高(所有化合物均超过80%),这取决于化合物(n = 8)。由于高温以及在不同的连续波配置下发生的不同现有物理化学条件,因此达到了很高的速率,这将允许各种非生物/生物去除机制(例如生物降解,吸附,挥发,水解,光降解)。虽然在VF床中改善了有氧代谢途径和固形物,但在HF床中占主导地位的是其他去除机制,例如厌氧生物降解和吸附。最后,通过直接暴露在阳光下的光降解,以及次要的是吸附到有机物上,似乎在FWS湿地的有机污染物去除中起了积极作用。 (C)2014 Elsevier B.V.保留所有权利。

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