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Quality of Leachate From Landfill with Reverse Osmosis Concentrate Recirculation

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The purpose of this study was to determine the changes of leachate quality on a selected municipal landfill with recirculation of concentrate from the reverse osmosis (RO) process. The research was carried out on an exploited municipal waste landfill, from which the samples of leachate, permeate and concentrate were collected in the years 2013-2015. The obtained samples were subjected to the physicochemical analysis, including the determination of general pollution parameters as well as organic and inorganic indicators. The obtained results showed that the concentrate recirculation resulted in intensification of the degradation processes in the waste body, expressed by the increase of biodegradability rate (BOD5/COD) and the value of conductivity and dissolved solids. Over time, the value of conductivity and dissolved solids stabilized; however, they reached the values higher than in conventional landfills. A characteristic feature of the long-recirculation landfills was a continuous increase in the concentration of ammonia nitrogen and COD values in the leachate.
Rocznik
Strony
205--211
Opis fizyczny
Bibliogr. 30 poz., rys., tab.
Twórcy
  • Department of Technology and Environmental Engineering Systems, Bialystok University of Technology, ul. Wiejska 45E, 15-351 Bialystok, Poland
Bibliografia
  • 1. Baran W., Adamek E., Sochacka J., Sobczak A., Makowski A. 2009. Forecasting accumulation of difficult-degradable pollutants in leachate from municipal landfills (in Polish). Proceedings of ECOpole 3(1), 121–125.
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  • 4. Calabrò P. S., Sbaffoni S., Orsi S., Gentili E., Meoni C. 2010. The landfill reinjection of concentrate leachate: Findings from a monitoring study at an Italian site. J Hazard Mater 181, 962–968.
  • 5. Christensen T. H., Kjeldsen P., Bjerg P. L., Jensen D. L., Christensen B. J., Baun A., Albrechtsen H., Heron G. 2001. Biogeochemistry of landfill leachate plumes. Applied Geochemistry 16, 659–718.
  • 6. Durmusoglu E., Yilmaz C. 2006. Evaluation and temporal variation of raw and pretreated leachate quality from an active solid waste landfill. Water, Air and Soil Pollution 171, 359–382.
  • 7. Eipper H., Maurer C. 1999. Purification of landfill leachate with membrane filtration based on the Disc Tube DT, Proceedings SARDINIA 99, Seventh International Waste Management and Landfill Symposium, Vol. II, pp. 97–108.
  • 8. Francois V., Feuillade G., Matejka G., Lagier T., Skhiri N. 2007. Leachate recirculation effects on waste degradation: Study on columns. Waste Management 27, 1259–1272.
  • 9. Fudala-Książek S. 2011. The impact of landfill leachate discharge on the efficiency of urban sewage treatment plant operation, PhD Dissertation (in Polish), Gdansk University of Technology.
  • 10. He R., Shen D., Wang J., He Y., Zhu Y. 2005. Biological degradation of MSW in a methanogenic reactor using treated leachate recirculation. Process Biochemistry 40, 3660–3666.
  • 11. Heinigin P. 1995. Recirculation of leachate concentrate from reverse osmosis. In: Christensen T. H., Cossu R., Stegman R. (eds.) Proceedings of Fifth International Waste Management and Landfill Symposium, volume 2, CISA, Cagliari, Italy.
  • 12. Heyer K. U., Stegman R. 2002. Landfill management: leachate generation, collection, treatment and costs. http://www.ifas-hamburg.de/pdf/leachate.pdf. [data dostępu: 07.03.2019].
  • 13. Kulikowska D., Klimiuk E. 2008. The effect of landfill age on municipal leachate composition. Bioresource Technology 99, 5981–5985, doi:10.1016/j.biortech.2007.10.015.
  • 14. Ledakowicz S., Kaczarek K. 2002. Laboratory simulation of anaerobic digestion of municipal solid waste. Appropriate Environmental and Solid Waste Management and Technologies for Developing Countries, vol. 2, Istanbul, Turkey: 1139–1146.
  • 15. Li N., Fane A.G., Ho W.S.W., Matsuura T. 2008. Advanced Membrane Technology and Application. Wiley Son Ltd. New York.
  • 16. Lipniacka-Piaskowska A. 2010. Operation of landfills with leachate recirculation (in Polish), PhD Dissertation, Faculty of Chemical Technology and Engineering, West Pomeranian University of Technology in Szczecin.
  • 17. Liu Y., Li X., Wang B., Liu S. 2008. Performance of landfill leachate treatment system with disc-tube reverse osmosis unit. Frontiers of Environmental Science and Engineering in China 2(1), 24–31.
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  • 22. Rice EW, Baird FB, Eaton AD, Clesceri LS. 2012. Standard Methods for the Examination of Water and Wastewater, 22nd edition. American Public Health Association, American Water Works Association, Water Environment Federation, Washington
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  • 24. Staton R. A., Thyne G. D., McCray J. E. 2004. Temporal changes in leachate chemistry of municipal solid waste landfill cell in Florida, USA. Environmental Geology 45, 982–991.
  • 25. Surmacz-Górska J. 2001. Degradation of organic compounds contained in the leachate from landfills, Monograph No. 5 (in Polish), Lublin.
  • 26. Szymański K. 1987. Migration of leachate from landfill sites in the ground. University of Technology in Koszalin. Koszalin.
  • 27. Szymański K. 2009a. Chromium compounds in sewage sludge from the tanning industry (in Polish). Monographs of the Committee of Environmental Engineering of the Polish Academy of Sciences 58(1), 321–329.
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  • 29. Szymański K., Nowak R. 2012. Transformations of Leachate as a Result of Technical Treatment at Municipal Waste Landfills. Annual Set The Environment Protection 14, 337–350.
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-df0cce64-4681-4645-aa1d-3f53bf2890a1
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