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The results of global research on the use of biomass for energy purposes through gasification or co-gasification with coal
Języki publikacji
Abstrakty
W artykule przedstawiono stan światowych badawczo-rozwojowych prac w zakresie współzgazowania węgla i biomasy oraz główne typy rozwiązań technologicznych reaktorów zgazowania. W szczególności przedstawiono wyniki najnowszych badań w zakresie wpływu udziału biomasy w mieszance wsadowej na skład gazu i wydajność poszczególnych jego składników.
The article presents the state of the world's research and development in the field of co-gasification of coal and biomass. Co-gasification of coal and biomass /bio-waste/ is a solution that allows the use of coal as a primary energy resource while maintaining the economic parameters of a large-scale installation, with simultaneous partial substitution of fossil fuels with biomass as a renewable energy source. Such a solution allows for management of bio-wastes for power generation and the improvement in plant's emissions of greenhouse gases, especially carbon dioxide emissions.
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Tom
Strony
579--583
Opis fizyczny
Bibliogr. 29 poz., tab.
Twórcy
Bibliografia
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- 6. Engvall K., Kusar H., Sjostrom K., Pettersson L.J.: Upgrading of Raw Gas from Biomass and Waste Gasification: Challenges and Opportunities. Topics in Catalysis 2011, no 54, pp. 949-959
- 7. Fermoso J., Arias B., Gil M.V., Plaza M.G., Pevida C., Pis J.J., Rubiera R.: Co-gasification of different rank coals with biomass and petroleum coke in a high-pressure reactor for H2 - rich gas production. Bioresource Technology 2010, no 101, pp. 3230-3235
- 8. Howaniec N., Smoliński A.: Effect of fuel blend composition on the efficiency of hydrogen-rich gas production in co-gasification of coal and biomass. Fuel 2014, no 128, pp. 442-450
- 9. Howaniec N., Smoliński A., Stańczyk K., Pichlak M.: Steam co-gasification of coal and biomass derived chars with synergy effect as an innovative way of hydrogen-rich gas production. International Journal of Hydrogen Energy 2011, no 36, pp. 14455-14463
- 10. Howaniec N., Smoliński A.: Steam co-gasification of coal and biomass - synergy in reactivity of fuel blends chars. International Journal of Hydrogen Energy 2013, no 38, pp. 16152 -16160
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- 12. Kirkels A.F., Verbong G.P.J.: Biomass gasification: Still promising? A 30-year global overview. Renewable and Sustainable Energy Reviews 2011, no 15, pp. 471-481
- 13. Kumabe K., Hanaoka T., Fujimoto S., Minowa T., Sakanishi K.: Co-gasification of woody biomass and coal with air and steam. Fuel 2007, no 86, 684-689
- 14. Lapuerta M., Hernandez J.J., Pazo A., Lopez J.: Gasification and co-gasification of biomass wastes: effect of the biomass origin and the gasifier operating conditions. Fuel Processing Technology 2008, no 89, pp. 828-837
- 15. Li K., Zhang R., Bi J.: Experimental study on syngas production by co-gasification of coal and biomass in a fluidized bed. International Journal of Hydrogen Energy 2010, no 35, pp.2722-2726
- 16. Mc Lendon T.R., Lui A.P., Pineault R.L., Beer S.K., Richardson S.W.: High-pressure co-gasification of coal and biomass in a fluidized bed. Biomass and Bioenergy 2004, no 26, pp. 377-388
- 17. McKendry P.: Energy production from biomass (part 3): gasification technologies. Bioresource Technology 2002, no 83, pp. 55-63
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- 19. Pan Y.G., Velo E., Roca X., Manya J.J,. Puigjaner L.: Fluidized-bed co-gasification of residual biomass/poor coal blends for fuel gas production. Fuel 2000, no 79, pp. 1317-1326
- 20. Państwowy Instytut Geologiczny, 2014, http://www.pgi. gov.pl/ [dostęp dn. 20.06.2014]
- 21. Pinio E., Lopes H., Andre R.N., Gulyurtlu I., Cabrita I.: Effect of catalysts in the quality of syngas and by-products obtained by co-gasification of coal and wastes. 1. Tars and nitrogen compounds abatement. Fuel 2007, no 86, pp. 2052-2063
- 22. Prins M.J., Ptasinski K.J., Janssen F.: From coal to biomass gasification: Comparison of thermodynamic efficiency. Energy 2007, no 32, pp. 1248-1259
- 23. Sjostrom K., Chen G., Yu Q., Brage C., Rosen C.: Promoted reactivity of char in co-gasification of biomass and coal: synergies in the thermochemical process. Fuel 1999, no 78, pp. 1189-1194
- 24. Smoliński A.: Niekonwencjonalne metody wykorzystania węgla kamiennego dla otrzymywania gazu bogatego w wodór. Prace Naukowe GIG, Katowice 2010
- 25. Tomeczek J.: Zgazowanie węgla. Politechnika Śląska. Skrypty Centralne nr 1551/4. Gliwice 1991
- 26. U.S. Energy Information Administration (EIA), International Energy Outlook, http://www.eia.gov/forecasts/ieo/ pdf/0484(2013).pdf
- 27. Vassilev S.V., Baxter D., Andersen L.K., Vassileva C.G.: An overwiew of the chemical composition of biomass. Fuel 2010, no 89, pp. 913-933
- 28. Yuan S., Dai Z., Zhou Z., Chen X., Yu G., Wang F: Rapid co-pyrolysis of rice straw and a bituminous coal in a high-frequency furnace and gasification of the residual char. Bioresource Technology 2012, no 109, pp. 188-197
- 29. Zhang L., Xu C., Champagne P.: Overview of recent advances in thermo-chemical conversion of biomass. Energy Conversion and Management 2010, no 51, pp. 969-982
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Bibliografia
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