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HERE A TECHNICAL SOLUTION FOR BURNING LARGE AMOUNTS OF BIOMASS IN COAL-FIRED BOILERS

Mihai, Cruceru, Bogdan, Diaconu, Luminita, Popescu, Cristinel, Racoceanu

First published: 2014-06-20https://doi.org/10.5593/sgem2014/b41/s17.036View metrics

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Title
HERE A TECHNICAL SOLUTION FOR BURNING LARGE AMOUNTS OF BIOMASS IN COAL-FIRED BOILERS
Authors
Mihai, Cruceru, Bogdan, Diaconu, Luminita, Popescu, Cristinel, Racoceanu
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 14th SGEM GeoConference on ENERGY AND CLEAN TECHNOLOGIES
Publisher
Stef92 Technology
Year
2014
Pages
Not available yet
ISSN
1314-2704
ISBN
978-619-7105-15-5
Language
en
Publication type
Conference Paper
References22
  1. European Union, “Climate & Energy Package”, 2008

  2. B. Ricketts, Editor, Coal Industry across Europe 2011, Euracoal, , ISSN 2034-5682.

  3. R. Sims, M. Taylor, J. Saddler, W. Mabee. From 1-st to 2-nd generation of biofuel technologies, International Energy Agency, Nov. 2008, p. 1-124.

  4. M. Cruceru et al., Possibilities of using Miscanthus Giganteus as Additional Fuel in Large Coal Fired Power Plants, Recent Researches in Electric Power and Energy Systems, 2013, p. 242-249.

  5. Visser, I. Co-combustion of miscanthus and coal. In Biomass for Energy and the Environment, Proceedings of the 9th European Bioenergy Conference, Copenhagen, Denmark, June 1996. Pergamon/Elsevier Publishers. 1996. pp. 14601461.

  6. Hein K.R.G., Bemtgen J.M., EU clean coal technology— co-combustion of coal and biomass, Fuel Processing Technology 54 1998 159–169

  7. ENERO, Market development biomass Romania Survey: Scenarios Study biomass Romania, 2009

  8. Eriggson K., Nilsson L. Assesment of the potential supply in Europe using a resource-focused approach, Biomass and Bioenergy, vol.30, pp.1-15, 2006

  9. Fernando, R. Cofiring high ratios of biomass with coal. IEA Clean Coal Center, CCC/194, 2012.

  10. Bridgeman, T.G., Jones, J.M., Williams, A., Waldron, D.J. An investigation of the grindability of two torrefied energy crops. Fuel, 89, 3911-3918, 2012.

  11. Arias, B., Pevida, C., Fermoso, J., Plaza, M.G., Rubiera, F., Pis, J.J. Influence of torrefaction on the grindability and reactivity of woody biomass. Fuel Processing Technology, 89, 169-175, 2008.

  12. European Union, “Climate & Energy Package”, 2008

  13. B. Ricketts, Editor, Coal Industry across Europe 2011, Euracoal, , ISSN 2034-5682.

  14. R. Sims, M. Taylor, J. Saddler, W. Mabee. From 1-st to 2-nd generation of biofuel technologies, International Energy Agency, Nov. 2008, p. 1-124.

  15. M. Cruceru et al., Possibilities of using Miscanthus Giganteus as Additional Fuel in Large Coal Fired Power Plants, Recent Researches in Electric Power and Energy Systems, 2013, p. 242-249.

  16. Visser, I. Co-combustion of miscanthus and coal. In Biomass for Energy and the Environment, Proceedings of the 9th European Bioenergy Conference, Copenhagen, Denmark, June 1996. Pergamon/Elsevier Publishers. 1996. pp. 14601461.

  17. Hein K.R.G., Bemtgen J.M., EU clean coal technology— co-combustion of coal and biomass, Fuel Processing Technology 54 1998 159–169

  18. ENERO, Market development biomass Romania Survey: Scenarios Study biomass Romania, 2009

  19. Eriggson K., Nilsson L. Assesment of the potential supply in Europe using a resource-focused approach, Biomass and Bioenergy, vol.30, pp.1-15, 2006

  20. Fernando, R. Cofiring high ratios of biomass with coal. IEA Clean Coal Center, CCC/194, 2012.

  21. Bridgeman, T.G., Jones, J.M., Williams, A., Waldron, D.J. An investigation of the grindability of two torrefied energy crops. Fuel, 89, 3911-3918, 2012.

  22. Arias, B., Pevida, C., Fermoso, J., Plaza, M.G., Rubiera, F., Pis, J.J. Influence of torrefaction on the grindability and reactivity of woody biomass. Fuel Processing Technology, 89, 169-175, 2008.

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