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Zastosowanie złóż hydrofitowych do oczyszczania ścieków o wysokim ładunku zanieczyszczeń

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
EN
Use of hydrophyte beds in high pollution change sewage treatment
Języki publikacji
PL
Abstrakty
EN
Quantitative and qualitative characteristics of reflux. Measuring of sewage treatment objects. Characteristics and usefulness of hydrophyte plants for reflux treatment. Evaluation of evaporization.
Rocznik
Tom
Strony
22--26
Opis fizyczny
Bibliogr. 28 poz.
Twórcy
autor
  • Wydział Inżynierii Lądowej i Środowiska, Politechnika Gdańska
Bibliografia
  • [1] Boutin C., Lienard A., Esser D. (1997), Development of a new generation of reed-beds filters in France: First results: Water Science &. Technology, 35(5): 315-322.
  • [2] Bule T.G. (2006), Long term performance of a constructed wetland for landfill leachate treatment, Ecological Engineering 26: 365-374.
  • [3] Christensen T.H., Kjeldsen P., Bjerg P.L., Jensen D.L., Christensen J.B., Baun A., Albrechtsen H.J., Heron G. (2001), Biogeochemistry of landfill leachate plumes - Review, Applied Geochemistry 16: 659-718.
  • [4] Fux Ch., Boehler M., Huber Ph., Brunner I., Siegrist H. (2002), Biological treatment of ammonium-rich wastewater by partial nitritation and subsequent anaerobic ammonium oxidation (anammox) in a pilot plant, Journal of Biotechnology 99: 293-306.
  • [5] Fux Ch., Lange K., Faesseler A., Huber P., Grueniger B., Siegrist H. (2003), Nitrogen removal from digester supernatant via nitrite-SBR or SHARON? Water Science & Technology, 48, (8): 9-18.
  • [6] Fux Ch.,Valten S., Carozzi V., Solley D., Keller J. (2006), Efficient and stable nitrification and denitrification of ammonium-rich sludge dewatering liquor using SBR with continous loading, Water Research, 40 (14): 2765-2775.
  • [7] Gajewska M., Obarska H. (2008), The influence of return flow of reject water from sludge dewatering on WWTP operation (In Polish), Chemical Industry, 5:448-452.
  • [8] Hans M., van der Roest J., van der Roest H. (1997) Don’t reject the idea of treating reject water, Water Scince & Technology, 35 (10): 27-34.
  • [9] Jeavons J., Stokes L., Upton J., Bingley M. (1998), Successful side stream nitrification of digested sludge liquors, Water Science & Technology, 38 (3): 111-118.
  • [10] Johansson Westholm L. (2003), Leachate treatment with use of SBR-technology combined with a constructed wetland system at the Isätra landfill site, Sweden, Proc, Sardinia 2003, the 9th International Waste Management and Landfill Symposium, S., Margherita di Pula, Cagliari, Italy: 75-81.
  • [11] Kadlec R.H. (2003), Integrated natural systems for landfill leachate treatment, Wetlands - nutrients, metals and mass cycling, Vymazal J, (Ed,) Backhuys Publishers, Leiden 2003: 1-33.
  • [12] Kinsley C.B., Crolla A.M., Kuyucak N., Zimmer M., Lafléche A. (2006), Nitrogen dynamics in a constructed wetland system treating landfill leachate, In: Proc, of 10th International Conference on Wetland Systems for Water Pollution Control, Lisbon, Portugal: 295-305.
  • [13] Klimiuk E., Kulikowska D., Koc-Jurczyk J. (2007), Biological removal of organics and nitrogen from landfill leachates - A review, In: Pawłowska M., & Pawłowski L., (eds,) Management of pollutant emission from landfills and sludge, Taylor & Francis Group, London: 187-204.
  • [14] Laurich F., Gunner C. (2003), The store and treatment process for sludge liquor management, Water Sci Technol, 47, (12): 269-275.
  • [15] Lo I.M.C. 1996, Characteristics and treatment of leachates from domestic landfills, Environment International 22, 433-442.
  • [16] Maehlum T. (1995), Treatment of landfill leachate in on-site lagoons and constructed wetlands, Water Science & Technology, 32 (3): 129-135.
  • [17] Marttinen S.K., Kettunen R.H., Rintala J.A. (2003),Occurrence and removal of organic pollutants in sewages and landfill leachates, The Science of the Total Environment 301: 1-12.
  • [18] Molle P., Lienard A., Boutin C., Merlin G., Iwema A. (2004), How to treat raw sewage with constructed wetlands: An overview of the French systems, (Proceedings) 9th International Conference on Wetland System for Water Pollution Control, 2004, Avignon, France: 11-20.
  • [19] Paxeus N. (2000), Organic compounds in municipal landfill leachates, Water Sci, Technol, 41 (7-8), 323.
  • [20] Peverly J.H., Surface J.M., Wang T. (1995), Growth and trace metals absorption by Phragmites australis in wetlands constructed for landfill leachate treatment, Ecological Engineering 5: 21-35.
  • [21] Platzer C., Mauch K.: Evaluations concerning soil clogging in vertical flow reed beds-mechanisms, parameters, consequences and „, solutions? (1996) in: (Materiały) 5th Internatinal Conference on Wetland System for Water Pollution Control, Universitaet fuer Bandenkultur Wien and International Association on Water Quality, Vienna, Chapter IV/2-11.
  • [22] Randerson P.F., Slater F.M. (2005), The role of willow plants in the treatment of iron-rich landfill leachate, Proc, 6th International Conf, on Environmental Engineering, 26-27 May 2005, Vilnius, Lithuania, Vilnius Gediminas Technical University, (1) 420-424.
  • [23] Robinson A.H. (2005), Landfill leachate treatment, Membrane Technology, 6-12.
  • [24] Rustige H., Nolde E. (2006), Nitrogen elimination from landfill leachates using an extra carbon source in subsurface flow constructed wetlands, In: Proc, of 10th International Conference on Wetland Systems for Water Pollution Control, September 23-29 2006 Lisbon, Portugal: 229-239.
  • [25] Tatsi A.A., Zoubolis A.I. (2002), A field investigation of the quantity and quality of leachate from a municipal waste landfill In a Mediterranean climate (Thessaloniki, Greece), Advances in Environmental Research, 6:207--219.
  • [26] Wett B., Alex J. (2003) Impact of separate reject water treatment on the overall plant performance Water Science & Technol, 48, (4): 139-14.
  • [27] Wojciechowska E., Obarska-Pempkowiak H. (2008), Leachate treatment at a pilot plant using hydrophyte systems, In: Pawłowska & Pawłowski (Eds) Management of Pollutant Emission from Landfills and Sludge, 2008 Taylor & Francis Group, London: 205-210.
  • [28] Vymazal J. (2001), Transformation of Nutrients in Natural and Constructed Wetlands, Leiden, The Netherlands: Backhuys Publishers, pp 519.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPP2-0005-0094
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