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Evaluation of municipal waste landfilling using the technology quality assessment method

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Evaluation of waste landfilling technologies performed has been presented with the technology quality assessment method. This method enables complex (technological, environmental, economic) comparisons of technological options including waste disposal involving emission (I) or utilization (II) of biogas, landfilling of treated waste from the mechanical-biological treatment (MBT) unit with emission of biogas (III) and treatment of waste in MBT unit plus option III (IV). Results of the technology quality calculation for options I–IV are 1971, 1709, 1170, 1748 points, respectively. If the technology quality of option I is 100%, utilization of biogas or introducing the MBT system improves technical quality by 11–13%.
Rocznik
Strony
167--179
Opis fizyczny
Bibliogr.22 poz., tab.
Twórcy
autor
  • Institute of Inorganic Chemistry and Technology, Cracow University of Technology, ul. Warszawska 24, 31-155 Cracow, Poland
  • Institute of Water Supply and Environmental Protection, Cracow University of Technology, ul. Warszawska 24, 31-155 Cracow, Poland
autor
  • Institute of Inorganic Chemistry and Technology, Cracow University of Technology, ul. Warszawska 24, 31-155 Cracow, Poland
autor
  • AGH University of Science and Technology, Faculty of Management, ul. Mickiewicza 30, 30-059 Cracow, Poland
Bibliografia
  • [1] KOWALSKI Z., Cleaner technologies-strategy for the protection of the environment, Polish Academy of Sciences, Bulletin of Committee of the Environmental Engineering, 1998, 3.
  • [2] GOLLINGER M., Ecological and economic assessment methods of modernization of manufacturing processes with receiving of chromium and phosphorous compound as an example, Cracow University of Economics, Cracow 2002.
  • [3] DEHOUS G., STAHL H., BUNKE D., JENSEITS W., GAERTNER S., ESPINAGOSA R., JAGER J., SCHWING E., DACH J., KARSCHUCK J., System vergleich unterschiedlicher Verfahren der Restabfallbehandlung im Kreis Neuwiedin, Öko-Institute, Darmstadt 1998.
  • [4] KULCZYCKA J., KOWALSKI Z., Principles of municipal waste management in Poland and selected region in Europe, Pol. J. Chem. Tech., 2008, 10 (4), 28.
  • [5] KOSIŃSKA I., KOWALSKI Z., Evaluation of municipal waste disposal with the method of process analysis with formulation of cumulated calculation, Research Works of Warsaw Technical University, Environ. Eng,. 2010, 58, 77 (in Polish).
  • [6] KOWALSKI Z., KULCZYCKA J., KOSIŃSKA I., The comparison of municipal waste landfilling and burning using the method of process analysis with cumulated hazard calculations, IGSMiE PAN, Cracow 2009, (report not published).
  • [7] DEN BOER E., DEN BOER J., SZPADT R., The analysis and assessment of municipal waste management technology in ecological (LCA) and economic aspects, IGSMiE PAN, Cracow 2008, (report not published).
  • [8] KJELDSEN P., BARLAZ M.A., ROOKER A.P., BAUN A., LEDIN A., CHRISTENSEN T.H., Present and longterm composition of MSW landfill leachate. A review, Crit. Rev. Env. Sci. Technol., 2002, 32 (4), 297.
  • [9] SCHWING E., Bewertung der Emissionen der Kombination mechanisch-biologischer und thermischer Abfallbehandlungsverfahren in Südhessen, Dissertation, Institut WAR, TUD Darmstadt, WAR-Schriftenreihe, Bd. 111, Darmstadt 1999.
  • [10] TABASARAN O., RETTENBERGER R., Möglichkeiten zur Ermittlung des Gaspotenzials, in BMFT, Umweltbundesamt: Deponiegasnutzung Berlin, 1984.
  • [11] FRANKE B., FRANKE A., KNAPPE F., Vergleich der Auswirkungen verschiedener Verfahren der Restmüllbehandlung auf die Umwelt und die menschliche Gesundheit, Institut für Energie und Umweltforschung, Heidelberg 1992.
  • [12] KOWALSKI Z., GOLLINGER M., Environmental evaluation of different variants of the chromium compound production model using chromic waste, Waste Manage., 2003, 23 (8), 771.
  • [13] KALIŃSKI I., BATORY J., Ecological survey of solid waste storage located in Zakroczym, Eko-Plus, Warsaw 2002 (not published).
  • [14] DEN BOER E., JĘDRCZAK A., KOWALSKI Z., KULCZYCKA J., SZPADT R., A review of municipal solid waste composition and quantities in Poland, Waste Manage., 2010, 30 (3), 369.
  • [15] HAIGH G., COPE D., DEED C., Development of monitoring. Protocols for stack emissions from landfill gas utilization system, Proc. Conf. Integrated Waste Management and Pollution Control: Research, Policy and Practice, Waste 2002, Stratford-upon-Avon.
  • [16] GILLET A.G., GREGORY R.G., BLOWES J.H., Measurement and assessment of landfill gas generating set emissions, Proc. Conf. Integrated Waste Management and Pollution Control: Research, Policy and Practice; Waste 2002, Stratford-upon-Avon.
  • [17] MIZSEY P., DELGADO L., BENKO T., Comparison of environmental impact and external cost assessment methods, Int. J. Life Cycle Assess., 2009, 14 (7), 665.
  • [18] DG REGIO, Guide to Cost-Benefit Analysis of investment Projects. Structural Funds, Cohesion Fund and Instrument for Pre-Accession, European Commission, Directorate General Regional Policy, 2008.
  • [19] FRICKE K., FRANKE H., DICHTL N., SCHMELZ K.-G., BIDLINGMAIER P., WEILAND W., Biologische Verfahren zur Bio- und Grünabfallverwertung, [in:] U. Loll (Ed.), ATV Handbuch – Mechanische und biologischeVerfahren der Abfallbehandlung, Ernst & Sohn Verlag für Architektur und technische Wissenschaften, GmbH, Berlin 2002.
  • [20] SCHACHERMAYER E., BAUER A.G., RITTER E., BRUNNER P.H., Messung der Güter- und Stoffbilanz einer Müllverbrennungsanlage, Umweltbundesamt, Wien 1995.
  • [21] GENEROWICZ A., KULCZYCKA J., KOWALSKI Z., BANACH M., Assessment of waste management technology using BATNEEC options, technology quality method and multi-criteria analysis, J. Environ. Manage., 2011, 92 (4), 1314.
  • [22] SKUTAN S., BRUNNER P.H., Stoffbilanzen mechanisch-biologischer Anlagen zur Behandlung von Restmüll (SEMBA), Technische Universität Wien, 2006.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-53f8f9b4-4547-408f-825f-729bdec9b0b8
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