3109102809

3109102809



Literatura

[1]    Davis K.A., Valentine J.R., Eddings E.G., Heap M.P.: Evaluating the Effects of Low-NOx Retrofits on Carbon in Ash Levels, Mega Symposium: EPRI-DOE-EPA Combined Utility Air Pollutant Control Symposium, Atlanta, GA, August 1999.

[2]    Conn R.E., Shan J., Vatsky J.: Low NOxCombustion systems for minimizing NOxand fly ash LOI: Wall-firing petcoke and T-firing severe slagging coal., 2005 Conference on Unburned Carbon on Utility Fly Ash, NETL, USA, April 13, 2005.

[3]    Pronobis M.: Modernizacja kotłów energetycznych. WNT Warszawa 2002.

[4]    Wilk Ryszard K.: Low-emission combustion. WPS Gliwice 2002.

[5]    Moberg G., Blid J-O., Wallin S., Fareid T., Ralston J.: Combined De-NOx/DeSOx and additional NOx reduction by cleaning flue gas condensate from amonia., PowerGen Intenrnational Conference, New Orleans, LA, Nov. 30 - Dec. 2,1999.

[6]    Haddad E., Ralston J., Green G., Castagnero: Full-Scale Evaluation of a Multi-Pollutant Technology: SO2, Hg, and NOx, Combined Power Plant Air Pollutant Control, Mega Symposium, #117 (2003).

[7]    Ralston J., Fessenden J., Green G., Higgins B., Espinosa G., Use of ROFA and Rotamix to Reduce NOx in a Riley Turbo-Fired Boiler Burning Landfill Gas and Natural Gas, White Paper at www.mobotecusa.com.

[8]    Haddad E., Crilley J., Higgins B.: The Viability and Economics of Adding a ROFA/Rotamix MobotecSystem to a Selective Catalytic Reduction (SCR) Installation. NETL/DOE 2003 Conference on SCR and SNCR for NOx Reduction Pittsburgh, PA October 29-30, 2003.

[9]    Crilley J., Shilling M., Higgins B., Coombs K.: SCR Levels of NOx Reduction with ROFA and Rotamix (SNCR) at Dynegy's Vermilion Power Station, 2004 Stack Emissions Symposium, Clearwater Beach, FL, July 28-30, 2004.

[10]    Crilley J., Haddad E., Higgins B.: Reducing SO3 Emissions at Coal-Fired Power Plants, Combined Power Plant Air Pollutant Control, Mega Symposium, (2004).

[11]    Błasiak W., Grimbrandt J., Chudy M., Pogodziński A.: Redukcja emisji NOxi SOx- Nowa organizacja pola przepływu oraz rozdziału powietrza spalania w kotłach, Energetyka Cieplna i Zawodowa, str. BOBA, 3/2006.

[12]    Błasiak W., Grimbrandt J.: Round about way of reducing NOx, Modern Power Systems, pp. 53-54, June 2006.

[13]    Jodal M., Lauridsen T., Dam-Johansen K.: NOx removal on a coal-fired utility boiler by Selective Non-Catalytic Reduction, Environmental Progress, vol. 11, no. 4, pp. 296-301,1992.

[14]    Kobyłecki R., Bis Z., Nowak W.: Authothermal Upgrading of Biomass and Wastes for Clean and Efficient Production of Power, Proc. of the 2005 International Conference on Coal Science, Okinawa, Japan, 2005.

[15]    Sciążko M., Zuwała J., Pronobis M.: Zalety i wady współspalania biomasy w kotłach energetycznych na tle doświadczeń eksploatacyjnych pierwszego roku współspalania biomasy na skalę przemysłową, Energetyka, str. 207-220, nr 3, 2006.

[16]    Biermann J.P., Higgins B., Wendt J.O.L, Senior C.L., Wang D.: Mercury reduction in a coal fired power plant at over 2000 F using MinPlus sorbent through furnace sorbent injection., Electric Utilities EEnvironmental Conference (EUEC), USA, January 22-25th 2006.



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