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Features of Refuse Derived Fuel in Poland – Physicochemical Properties and Availability of Refuse Derived Fuel

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Języki publikacji
EN
Abstrakty
EN
Refuse Derived Fuels are used as energy carrier mainly in cement plants; however, more and more often they are applied in power plants as a substitute for fossil fuels. In order to prepare a proper waste-to-energy investment, the availability of the fuel, as well as fuel properties should be determined. The article presented the amounts of generated RDF in Poland, number installation which produced RDF in 2019 and 2020 and amounts of incinerated RDF in cement and incineration plants. The amount of generated RDF is rather constant – about 2.5 million Mg/year. RDF is mainly incinerated in cement plants – about 1.5 million Mg/year. The article also presented general physicochemical analysis of several RDF samples and coal. Some of the RDF samples reached high energy parameters – low heating value up to 25 MJ/kg; however, the properties vary a lot, due to their heterogeneous character, technological process of their production and other factors. In practice, the requested parameters and amount of RDF are established and the RDF producer prepares and delivers the fuel according to the concluded contract.
Rocznik
Strony
1--9
Opis fizyczny
Bibliogr. 18 poz., rys., tab.
Twórcy
  • Institute of Energy and Fuel Processing Technology, ul. Zamkowa 1, 41-803 Zabrze, Poland
Bibliografia
  • 1. Akdag Sever A., Atimtay A., Sanin F.D. 2016. Comparison of fuel value and combustion characteristics of two different RDF samples. Waste Management, 47, 217–224.
  • 2. Bras I., Silva E., Teixeira de Lemos L. 2020. Feasibility of using municipal solid wastes rejected fractions as fuel in a biomass power plant. Environment Protection Engineering, 46(2).
  • 3. Compagnone G., De Filippis P., Scarsella M., Verdone N., Zeppieri M.2006. Heavy metals behavior during RDF gasification. WIT Transcations on Ecology and the Environment. WIT Press, 92.
  • 4. Dianda P., Mahidin E., Munawar. 2018. Production and characterization refuse derived fuel (RDF) from high organic and moisture contents of municipal solid waste (MSW), IOP Conference Series: Material Science and Engineering, 334, 012035.
  • 5. Directive (EU) 2018/851 of the European Parliament and of the Council of 30 May 2018 amending Directive 2008/98/EC on waste.
  • 6. Hemidat S., Saidan M., Al-Zu’bu S., Irshidat M., Nassour A., Nelles M. 2019. Potential utilization of RDF as an alternative fuel to be used in cement industry in Jordan. Sustainability, 11, 5819
  • 7. Hryb W., Matyasik P. 2018. Mercury content in refuse-derived fuels. Archives of Environmental Protection, 44(4), 65–72.
  • 8. Mlonka-Mędrala A., Dziok T., Magdziarz A., Nowak W. 2021. Composition and properties of fly ash collected from a multifuel fluidized bed boiler co-firing refuse derived fuel (RDF) and hard coal. Energy, 234, 121229.
  • 9. Niesler M., Stecko J., Stelmach S., Kwiecinska-Mydlak A. 2021. Biochars in Iron Ores Sintering Process: Effect on Sinter Quality and Emission. Energies, 14, 3749.
  • 10. Stecko J., Niesler M., M. Bernasowski, Klimczyk A. 2018. Utilisation of metallurgical sludge by multi-layer sintering. Ironmaking & Steelmaking, 45(9), 779–786.
  • 11. The Act of 4 July 2019 amending the act on waste and other acts (Journal of Laws 2019 item 1403 (in Polish).
  • 12. The Act of 3 October 2008 on sharing infromation on environment and its protection, society participation in environmental protection and environmental impact assessments (Journal of Laws 2022 item 1029) (in Polish).
  • 13. The Regulation of the Minister of Climate of 2 January 2020 on waste catalog (Journal of Laws 2020 item 10) (in Polish).
  • 14. The Regulation of the Minister of Development of 21 January 2016 on requirements concerning waste incineration process performance and ways of management of waste generated in this process (Journal of Laws 2016 item 108) (in Polish).
  • 15. The Regulation of the Minister of Economy of 16 July 2015 on permitting waste to be deposited on landfills (Journal of Laws 2015 item 1277) (in Polish).
  • 16. Wagland S.T., Kilgallon P., Coveney R., Garg A., Smith R., Longhurst P.J., Pollard S.J.T., Simms N. 2011. Comparison of coal/solid recovered fuel (SRF) with coal/refuse derived fuel (RDF) in a fluidized bed reactor. Waste Management, 31(6), 1176–1183.
  • 17. Wilen C., Salokoski P., Kurkela E., Sipila K. 2004. Finnish expert report on best available techniques in energy production from solid recovered fuels, Finnish Environment Institute, Helsinki.
  • 18. Zhao L., Giannis A., Lam W.-Y., Lin S.-X., Yin K., Yuan G.-A., Wang J.Y. 2016. Characterization of Singapore RDF resources and analysis of their heating value. Sustainable Environment Research, 26(1), 51–54.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-39f5c87e-6612-46de-9b3a-c7ab17bd4ece
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