4.5 Article

Tolerance to hydraulic and organic load fluctuations in constructed wetlands

期刊

WATER SCIENCE AND TECHNOLOGY
卷 56, 期 3, 页码 39-48

出版社

IWA PUBLISHING
DOI: 10.2166/wst.2007.507

关键词

horizontal flow; tourism facilities; variable wetland loads; vertical flow and hybrid constructed wetlands

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This paper describes a two-year performance evaluation of four different constructed wetland (CW) treatment systems designed by IRIDRA Srl, located in central Italy. All four CW systems were established to treat wastewater effluent from different tourist activities: (1) one single-stage CW for secondary treatment of domestic, wastewater (30 p.e.) at a holiday farm site; (2) a hybrid compact system consisting,of two stages, a horizontal flow (HF) system followed by a vertical flow (VF) system for the secondary treatment of effluent from a 140 p.e. tourist resort; (3) a single-stage vertical flow (VF) CW for a 100 p.e. mountain shelter; and (4) a pair of single-stage, HF CWs for the secondary treatment of segregated grey and black water produced by an 80 p.e. camping site. These tourism facilities are located in remote areas and share some common characteristics concerning their water management: they have high variability of water consumption and wastewater flow, depending on the season, weather and weekly regularities; they have no connection to a public sewer and most sites are located in a sensitive environment. Total suspended solids (TSS), chemical oxygen demand (COD), biochemical oxygen demand (BOD5), ammonium (N-NH4+), nitrate (N-NOx), total nitrogen (Ntot), total, phosphorus (Ptot), total coliform (TC), faecal coliform (FC), E coli removal efficiencies for all four CW systems are presented. The results from this study demonstrate the potential of CWs as a suitable technology for treating wastewater from tourism facilities in remote areas. A very efficient COD reduction (83-95%) and pathogen elimination (3-5 logs) have been achieved. Furthermore, the CWs are easily. maintained, robust (not sensitive to peak flows), constructed with local materials, and operate with relatively low cost.

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