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Economic efficiency of processing biodegradable waste in dry anaerobic digestion and composting technologies under the Polish market conditions

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
An economic analysis of the dry anaerobic digestion (AD) in Poland operated with various input streams has been presented, ranging from the organic fraction of residual waste to biowaste from various sources. The shares of individual costs and revenues change significantly in these operation options. Sensitivity analyses, performed under assumption of four different market conditions showed that the profitability of AD plants is unpredictable. Assuming the current legal situation, the final profit or loss of the digestion technology strongly depends on the prices of energy. The final economic output for the anaerobic digestion was compared to the output of an aerobic stabilization process.
Rocznik
Strony
269--286
Opis fizyczny
Bibliogr. 22 poz., tab., rys.
Twórcy
  • Section of Waste Technology and Land Remediation, Faculty of Environmental Engineering, Wroclaw University of Science and Technology, Wybrzeże Wyspianskiego 27, Wroclaw; 50-370, Poland
autor
  • Section of Waste Technology and Land Remediation, Faculty of Environmental Engineering, Wroclaw University of Science and Technology, Wybrzeże Wyspianskiego 27, Wroclaw; 50-370, Poland
Bibliografia
  • [1] MORIARTY K., Feasibility Study of Anaerobic Digestion of Food Waste in St. Bernard, Louisiana. A Study Prepared in Partnership with the Environmental Protection Agency for the RE-Powering America’s Land Initiative. Siting Renewable Energy on Potentially Contaminated Land and Mine Sites. Technical Report, National Renewable Energy Laboratory, Golden, CO, 2013.
  • [2] EDELMANN W., SCHLEISS K., JOSS A., Ecological, energetic and economic comparison of anaerobic digestion with different competing technologies to treat biogenic wastes, Water Sci. Technol., 2000, 41 (3), 263.
  • [3] SONESSON U., BJORKLUND A., CARLSSON M., DALEMO M., Environmental and economic analysis of management systems for biodegradable waste, Res. Conserv. Recycl., 2000, 28 (1–2), 29.
  • [4] FRICKE K., SANTEN H., WALLMANN R., Comparison of selected aerobic and anaerobic procedures for MSW treatment, Waste Manage, 2005, 25 (8), 799.
  • [5] MONSON K.D., ESTEVES S.R., GUWY A.J., DINSDALE R.M., Anaerobic Digestion of Biodegradable Municipal Wastes. A Review, The Sustainable Environment Research Centre, University of Glamorgan, 2007.
  • [6] DE BAERE L., MATTHEEUWS B., Anaerobic digestion of the organic fraction of municipal solid waste in Europe. Status, experience and prospects, internet site: http://www.ows.be/wp-content/uploads/2013/02/Anaerobic-digestion-of-the-organic-fraction-of-MSW-in-Europe.pdf, 20.11.2015.
  • [7] KARAGIANNIDIS A., PERKOULIDIS G., A multi-criteria ranking of different technologies for the anaerobic digestion for energy recovery of the organic fraction of municipal solid wastes, Biores. Technol., 2009, 100, 2355.
  • [8] PYTLAR T.S., PHAGOO D., Comparison of Anaerobic Digestion Options: Mixed Refuse versus Pre- Segregated Organics Processing and Wet Versus Dry Systems, Federation of New York Solid Waste Associations, Solid Waste and Recycling Conference and Trade Show, New York 2013
  • [9] MURPHY J.D., POWER N.M., A technical, economic and environmental comparison of composting and anaerobic digestion of biodegradable municipal waste, J. Environ. Sci. Health A, Tox. Hazard. Subst. Environ. Eng., 2006, 41 (5), 865.
  • [10] HOGG D., Eunomia Research and Consulting, Economic analysis of options for managing biodegradable municipal waste. Final report to the European Commission, Eunomia, Bristol 2002.
  • [11] AMLINGER F., PEYR S., HILDEBRANDT U., MÜSKEN J., CUHLS C., CLEMENS J., The process of composting, Directive of the Federal Ministry of Agriculture and Forestry, Environment and Water, Wien 2005 (in German).
  • [12] JĘDRCZAK A., Biological Treatment, PWN, Warsaw 2007 (in Polish).
  • [13] DEN BOER E., SZPADT R., LEWANDOWSKA D., Waste and energy data for the regional model for energy from waste in Lower Silesia, Lower Silesia Marshal’s Office and the Technical University of Wrocław, Wrocław 2014.
  • [14] FOX K., Wood instead of gasoline, 2008, http://www.drewnozamiastbenzyny.pl/metan/, 21.11.2015 (in Polish).
  • [15] TANIMU M.I., MOHD GHAZI T.I., HARUN R.M., IDRIS A., Effect of carbon to nitrogen ratio of food waste on biogas methane production in a batch mesophilic anaerobic digester, Int. J. Inn. Manage. Technol., 2014, 5 (2), 116–119.
  • [16] DERSKI B., ZASUŃ R., Will the government buy green certificates? Their prices go mad, 2013, http://wyborcza.biz/biznes/1,100896,13520363,Rzad_bedzie_skupowal_zielone_certyfikaty__Ichceny.html, 10.04.2013 (in Polish).
  • [17] Notice of the Minister of Environment of 13 August 2013. On the amount of fees for using the environment for the year 2014 (MP 2013, pos. 729) (in Polish).
  • [18] URE (The Energy Regulatory Office), Average sales price of heat produced in generating units of non-cogeneration units for 2012, Warsaw, 2013, http://www.ure.gov.pl/pl/urzad/informacje-ogolne/aktualnosci/5178,Srednie-ceny-sprzedazy-ciepla-wytworzonego-w-jednostkach-wytworczych-niebedacych.html, 28.03.2014 (in Polish).
  • [19] CIEPIELA D., The situation on the market for green certificates has improved, 2014, http: //energetyka.wnp.pl/poprawia-sie-sytuacja-na-rynku-zielonych-certyfikatow,218256_1_0_0.html, 28.03.2014(in Polish).
  • [20] Enea, Corporate package, 2014, http://www.enea.pl/4/energia-dla-biznesu/duza-firma/pakiet-korporacyjny-133.html, 28.03.2014 (in Polish).
  • [21] ORTNER M.E., MÜLLER W., BOCKREIS A., The greenhouse gas and energy balance of different treatment concepts for biowaste, Waste Manage. Res., 2013, 31 (10), 46.
  • [22] KERNERT C., SCHAEFER D., Financing renewable energy in times of great financial instability, DIW-Wochenbericht, 2012, 79 (31), 3 (in German).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b490ea05-9826-4a68-960d-ed31668d1a73
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