ONUREM-COWSIM · Optimisation of nutrient removal in constructed wetlands using special substrates and numerical simulation
FP6 — Marie Curie Actions (Human Resources and Mobility)
- Duration
- 2005-08-01 → 2007-07-31
- EU contribution
- €22,000
- Participants
- 1
- Scheme
- EIF
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Results in brief
Final Activity Report Summary - ONUREM-COWSIM (Optimisation of nutrient removal in constructed wetlands using special substrates and numerical simulation)
As stated in the "Urban Wastewater Treatment Directive" [91/271/EEC], small communities with a population of less than 2000 persons are obliged to collect and treat their wastewater in appropriate ways. "Extensive Treatment Techniques" like constructed wetlands (CWs) are more economical and ecological treatment solutions if compared to the more complicated "Conventional Treatment Systems" and therefore a possible technological option for these communities. Due to their several operational advantages over other designs, Vertical Subsurface Flow (VSSF) CWs with intermittent loading became state-of-the-art during last 20 years. VSSF CWs have high removal efficiencies for organics, suspended solids, ammonium and pathogens. However, the large surface area requirement (3-10 m2/person), as well as high total nitrogen (N) and phosphorus (P) removal efficiency to be met makes it sometimes impossible to implement these systems in small/medium communities, where land is at a premium. CW researchers recently have focused on the optimisation of SSF CWs and in particular on the use of special substrates for enhanced N and P removal. Furthermore, even there are many experiences on constructing and operating the CWs; their design is still based mostly on "rules and thumbs". Thus, development of reliable simulation tools is very important. However, only few simulations models like the multi-component reactive transport module CW2D (Langergraber, 2001) exists up to now. CW2D is able to describe the transformation and biochemical elimination processes of organic matter, N&P compounds of wastewater. For a successful application of CW2D, it was shown that the proper and detailed characterisation of the properties of the substrate used in CWs is a cornerstone. In literature a lot of experiments and methods are available describing the potential use of special substrates for use as support media in VSSF CWs. To a very large extent, however, experimentation and data published are not comparable to each other since conditions, experimental analysis and approaches are differing from each other significantly. To close this gap this project ONUREM-COWSIM has been developed. ONUREM-COWSIM aimed to compare the N and P elimination performances of different substrates tested in lab-scale VSSF CWs and operated/analysed under the controlled conditions. The substrates (natural or artificial filter materials or co-products of several industries) were: 1) Sand, 2&3) Zeolite (two kinds), 4) Crushed-concrete, 5) Ferrosorp originating from Austria and 6) Sand, 7) Zeolite, 8) Pumice, 9) Perlite and 10) Blast furnace granulated slag originating from Turkey. Lab-scale VSSF CWs filled with those substrates have been constructed in the technical hall at BOKU. The columns have been loaded with primarily treated real municipal wastewater provided from the combined sewer system of Vienna. Monitoring has carried out for a period of 8 months. The data have been analysed using the same scientific approaches. A database including the physico-chemical and hydraulic characteristics of the substrates used in this research has been prepared. Results of this research were more realistic if compared to the experiments where synthetic wastewater or only N or P solutions were used. A simulation study has been performed putting the outcomes of this research (e.g. monitoring results, tracer studies and database information) into the model CW2D. Those findings have increased number and quantity of available input model data for different substrates for CW2D. It is also believed that the outcomes and results of simulation study of the project ONUREM-COWSIM has brought the model CW2D few steps further on the way for using CW2D as a practical design tool for optimal sizing of SSF CWs.
Data: CORDIS, © European Union
Project objective
The Council Directive Urban Wastewater Treatment" [91/271/EEC], and very recently the Water Framework Directive [2000/60/EEC] have come to remind of the necessity of natural and energy saving appropriate treatment for the urban and domestic wastewater discharges with the objective of a "good ecological status" of European water by the year 2015. In this regard, the 5th Framework Programme has promoted research on the subject of urban and domestic wastewater treatment using appropriate treatment techniques. In particular, research projects have been launched, among others, on improvement of extensive treatment techniques to treat urban wastewater produced by agglomerations with less than 2000 PE, which have already a waste water collection network, but also must set up an appropriate treatment by the end of 2005."Constructed wetlands" (CWs), one of the widely used extensive treatment techniques, are now standing as proper solutions for the treatment of municipal, industrial and agricultural wastewater in many part of the world due to their nutrient capturing capacity, simplicity, low construction, operation and maintenance cost, low energy demand and potential for creating biodiversity. Nowadays, vertical subsurface flow CWs with intermittent feeding are state-of-the-art in Europe. However, the larger surface area requirement (3-10 m2/PE) of the CWs to meet the specified quality objectives makes it sometimes impossible to set up these reed beds in small/medium communities, where land is at a premium. Therefore, several wetl and researchers have recently focused on optimisation of the design of CWs, on use of special substrates in CWs for enhanced nutrient removal, and also on the related pollutant retention mechanisms. In this context, the main objective of this proposed research is to quantify the effect of different natural and artificial substrates that are commercially available in the markets of Turkey, Austria and other."
Original text from CORDIS.
Participants
- UNIVERSITY OF NATURAL RESOURCES AND APPLIED LIFE SCIENCES, VIENNA · VIENNACoordinatorCity levelAustria
Links
Data: CORDIS, © European Union
