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The Emission of Carbon Monoxide and Nitrogen Oxides from Boilers Supplied by a Pellet under the Influence of Changes in the Air-Fuel Equivalence Ratio

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The aim of the experimental research was to determine the impact of changes in the air-fuel equivalence ratio during the combustion of wood pellet in the boiler on the CO and NOx emissions. In order to realize the tests, 10 kW wood pellet boiler equipped with a dedicated wood pellet burner was employed. On the basis of the research, the relationship between the level of harmful substances emitted under the influence of changes in the air-fuel equivalence ratio was presented. The obtained results and conclusions based on them can be used to optimize the design of heating devices fed by wood pellets.
Rocznik
Strony
34--38
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
  • Poznan University of Technology, Faculty of Transport Engineering, Chair of Thermal Engineering, ul. Piotrowo 3, 60-965 Poznań, Poland
  • Poznan University of Technology, Faculty of Transport Engineering, Chair of Thermal Engineering, ul. Piotrowo 3, 60-965 Poznań, Poland
  • Poznan University of Technology, Faculty of Transport Engineering, Chair of Thermal Engineering, ul. Piotrowo 3, 60-965 Poznań, Poland
  • Poznan University of Technology, Faculty of Transport Engineering, Chair of Thermal Engineering, ul. Piotrowo 3, 60-965 Poznań, Poland
Bibliografia
  • 1. Barranco R., Gong M., Thompson A., Cloke M., Hanson S., Gibb W., Lester E. 2007. The impact of fly ash resistivity and carbon content on electrostatic precipitator performance. Fuel, 86(16), 2521–2527.
  • 2. Carrillo M.A., Staggenborg S.A., Pineda J.A. 2014. Washing sorghum biomass with water to improve its quality for combustion. Fuel 116, 427–431.
  • 3. Caseiro, Bauer H., Schmidl C., Pio C.A., Puxbaum H. 2009. Wood burning impact on PM10 in three Austrian regions. Atmos. Environ., 43(13), 2186–2195.
  • 4. Ciupek B., Janeba-Bartoszewicz E. Urbaniak R. 2019. Wpływ rozdrobnienia i zwiększonej wilgotności paliw węglowych na skład chemiczny spalin (in Polish). Przem. Chem., 98(8), 1000–1002.
  • 5. Creutzig F., Ravindranath N.H., Berndes G., Bolwig S., Bright R., Cherubini F., Chum H., Corbera E., Delucchi M., Faaij A. 2015. Bioenergy and climate change mitigation: An assessment. GCB Bioenergy, 7, 916–944.
  • 6. Joseph B., Hensgen F., Bühle L., Wachendorf M. 2018. Solid Fuel Production from Semi-Natural Grassland Biomass – Results from a CommercialScale IFBB Plant. Energies, 11(11), 3011.
  • 7. Obernberger I., Thek G. 2004. Physical characterisation and chemical composition of densified biomass fuels withregard to their combustion behaviour. Biomass Bioenergy, 27, 653–669.
  • 8. Rashid M., Syahirah M.M., NorRuwaida J., Huda N. 2014. Characteristics of Particulate Emission from a Biomass Fired Boiler. Agriculture and Agricultural Science Procedia, 2, 265–271.
  • 9. Runge T., Wipperfurth P., Zhang C. 2014. Improving biomass combustion quality using a liquid hot water treatment [J]. Biofuels, 4(1), 73–83.
  • 10. Shao Y., Wang J., Preto F., Zhu J., Xu C. 2012. Ash Deposition in Biomass Combustion or Co-Firing for Power/Heat Generation. Energies, 5, 5171–5189.
  • 11. Sippula, Lind T., Jokiniemi J. 2008. Effects of chlorine and sulphur on particle formation in wood combustion performed in a laboratory scale reactor. Fuel, 87(12), 2425–2436.
  • 12. Sommersacher P., Brunner T., Obernberger I. 2012. Fuel Indexes: A Novel Method for the Evaluation of Relevant Combustion Properties of New Biomass Fuels. Energy Fuels, 26, 380–390.
  • 13. Staiger B., Unterberger S., Berger R., Hein K.R.G. 2005. Development of an air staging technology to reduce NOX emissions in grate fired boilers. Energy, 30(8), 1429–1438.
  • 14. Stubenberger G., Scharler R., Zahirovic S., Obernberger I. 2008. Experimental investigation of nitrogen species release from different solid biomass fuels as a basic for release models. Fuel, 87(6), 793–806.
  • 15. Verma V.K., Bram S., Gauthier G., De Ruyck J. 2011. Performance of a domestic pellet boiler as a function of operetional loads. Part 2. Biomass Bioenergy, 35(1), 272–279.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8dc8ab2a-be3e-45da-bfec-1021c36fb59f
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