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Life Cycle Assessment of the Mixed Municipal Waste Management System Based on Mechanical-Biological Treatment

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The aim of this study was to identify and assess the potential environmental impacts caused by mixed municipal solid waste management system based on mechanical-biological treatment technology in Rybnik, Poland. The study is based on life cycle assessment methodology, with application of EASETECH model. The system elements that were taken under consideration are the collection and transportation of MSW (municipal solid waste); MBT plant (mechanical and biological treatment), transportation between system elements, landfilling with LFG (landfill gas) collection system and gas combustion in flare. The adopted functional unit is 1 Mg of mixed municipal waste generated in Rybnk.
Rocznik
Strony
175--183
Opis fizyczny
Bibliogr. 25 poz., rys., tab.
Twórcy
  • Department of Environmental Management and Protection, Faculty of Mining Surveying and Environmental Engineering, AGH University of Science and Technology, al. A. Mickiewicza 30, 30-059 Krakow, Poland
  • Department of Environmental Management and Protection, Faculty of Mining Surveying and Environmental Engineering, AGH University of Science and Technology, al. A. Mickiewicza 30, 30-059 Krakow, Poland
Bibliografia
  • 1. Abeliotis K., Kalogeropoulos A., Lasaridi K., 2012. Life Cycle Assessment of the MBT plant in Ano Liossia, Athens, Greece. Waste Manage., 32, 213–219.
  • 2. Bilitewski B., Hardtle G., Marek K., 2003. Podręcznik Gospodarki Odpadami – Teoria i praktyka, Wyd.1, Wydawnictwo Seidel – Przywecki Sp. z o.o., Warszawa (in Polish).
  • 3. Bilitewski B., Oros C., Christensen T.H., 2010. Mechanical Biological Treatment, in: Christensen T.H. (Ed.), Solid Waste Technology & Management. John Wiley & Sons Ltd, 628–638.
  • 4. Bjarnadottir H.J., Fridriksson G.B., Johnsen T., 2002. Guidelines for the use of LCA in the waste management sector. Nordtest Report TR 517. Nordtest, Espoo, Finland.
  • 5. Blengini G.A., 2008. Using LCA to evaluate impacts and resources conservation potential of composting. a case study of the Asti district in Italy, Conservation and recycling, 52, 1373–1381.
  • 6. Bovea M.D., Ibáñez-Forés V., Gallardo A., Colomer-Mendoza F.J., 2010. Environmental assessment of alternative municipal solid waste management strategies. A Spanish case study. Waste Manage, 30, 2383–2395.
  • 7. Damgaard A., Baumeister H., Astrup T.F., & Christensen T.H., 2014. EASETECH – A LCA model for assessment of environmental technologies. In Abstract Book – DTU Sustain Conference, Kgs. Lyngby: Technical University of Denmark.
  • 8. De Feo G., Malvano C., 2009. The use of LCA in selecting the best MSW management system. Waste Manage, 29, 1901–1915.
  • 9. den Boer E., Cholewa M., 2009. Znaczenie LCA w gospodarce odpadami komunalnym w praktyce, Wydawnictwo IGSMiE PAN, Kraków (in Polish).
  • 10. European Commission, 1999. Council Directive 1999/31/EC of 26 April 1999 on the landfill of waste (OJ L 182, 16.7.1999).
  • 11. European Commission, 2008. Directive 2008/98/EC of the European Parliament and of the Council of 19 November 2008 on waste and repealing cer tain Directives, (OJ L 312, 22.11.2008).
  • 12. Grzesik K., Malinowski M., 2016. Life Cycle Assessment of the Mechanical–Biological Treatment of Mixed Municipal Waste in Miki Recycling, Krakow, Poland, Environmental Engineering Science, September.
  • 13. Guereca L.P., Gasso S., Baldasano J.M., Guerrero P.J., 2006. Life cycle assessment of two biowaste management systems for Barcelona, Spain, Resources, Conservation and Recycling, 49, 32–48,
  • 14. Guinée J.B., Gorrée M., Heijungs R., Huppes G., Kleijn R., Koning A. de, Oers L. van, Wegener Sleeswijk A., Suh, S., Udo de Haes H.A., Bruijn H. de, Duin R. van, Huijbregts M.A.J., 2002. Handbook on life cycle assessment. Operational guide to the ISO standards. I: LCA in perspective. IIa: Guide. IIb: Operational annex. III: Scientific background. Kluwer Academic Publishers, Dordrecht.
  • 15. Kirkeby J.T., Birgisdottir H., Hansen T.L., Christensen T.H., Bhander G.S., Hauschild, M., 2006. Environmental assessment of solid waste systems and technologies: EASEWASTE. Waste Management Research, 24, 3–15.
  • 16. Kulczycka J., Pietrzyk-Sokulska E., 2009. Ewaluacja gospodarki odpadami komunalnymi w Polsce, Wydawnictwo IGSMiE PAN, Kraków (in Polish).
  • 17. Laurent A., Lautier A., Rosenbaum R.K., Olsen, S.I. Hauschild, M.Z., 2011. Normalization in EDIP97 and EDIP2003: updated European inventory for 2004 and guidance towards a consistent use in practice, Int JLCA, 16(8), 728–738.
  • 18. Luoranen M., Soukka R., Denfas G., Horttanainen M., 2009. Comparison of energy and material recovery of household waste management from the environmental point of view – case Kaunasm Lithuania, Applied Thermal Engineering, 29, 938–944.
  • 19. Montejo C., Tonini D., Márquez M.D.C., Astrup T.F., 2006. Mechanical–biological treatment: Performance and potentials. An LCA of 8 MBT plants including waste characterization. Journal of Environmental Management, 128, 661–673.
  • 20. National Waste Management Plan 2022 (2060). Republic of Poland. Resoluton no. 88 of the Council of Ministers of 1 July 2016 on the National Waste Management Plan 2022, Monitor Polski of 11 August 2016.
  • 21. Papageorgiou A., Karagiannidis A., Barton J.R., and Kalogirou E. 2009. Municipal solid waste management scenarios for Attica and their greenhouse gas emission impact. Waste Management and Research, 27, 928–937.
  • 22. Ribera,C., Petersenb,C., Christensena T.H., 2009. Chemical composition of material fractions in Danish household waste; Waste Management, 29, 1251–1257.
  • 23. Sieja L., Kalisz M., Książek D., Szojda G., Terakowski M., 2011. Badanie ilości i struktury odpadów komunalnych Miasta Krakowa, Instytut Ekologii Terenów Uprzemysłowionych, Katowice (in Polish).
  • 24. Siemiątkowski G., Nolepa A., Binner E., Paciorkowski M., Glanz R., Poluszyńska J., Gąsior J., 2010. Mechaniczno-biologiczne przetwarzanie frakcji biodegradowalnej odpadów komunalnych, Wydawnictwo Instytut Śląski Sp. z o.o., Opole (in Polish).
  • 25. Yang N., Damgaard A., Lü F., Shao L.-M., Brogaard L.K.-S., He P.-J., 2014. Environmental impact assessment on the construction and operation of municipal solid waste sanitary landfills in developing countries: China case study. Waste Manag, 34, 929–937.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e6ff3fe0-ffef-474b-96c8-66dc2d0260a0
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