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Perspektywiczne możliwości ograniczania emisji CO2 z elektrowni węglowych

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Warianty tytułu
EN
Perspective possibilities to reduce CO2 emission from coal-fired power plants
Języki publikacji
PL
Abstrakty
PL
Omówiono perspektywiczne możliwości ograniczania emisji dwutlenku węgla z elektrowni węglowych. Wyniki prac studialnych stwarzają nadzieje na wdrażanie technologii wychwytywania CO2 po procesie spalania z absorbentami, które umożliwiać będą produkcję energii elektrycznej ze sprawnością netto do 45% (przy 90% CCS). Oznacza to, że wzrost zużycia węgla spowodowany CCS spadłby z obecnie przewidywanych 65% nawet do 9%.
EN
Discussed are perspective possibilities to reduce CO2 emission from coal-fired power plants. Results of investigation works raise our hopes of implementing the technologies enabling CO2 capture after the process of combustion with absorbents that will enable electric energy production with net efficiency of up to 45% (with 90% CCS). It means that the increase in coal consumption induced by CCS would fall from the at present anticipated 65% to even 9%.
Czasopismo
Rocznik
Tom
Strony
231--248
Opis fizyczny
Bibliogr. 38 poz., rys., tab.
Twórcy
autor
  • Zakład Procesów Cieplnych, Instytut Energetyki
Bibliografia
  • [1] European Environment Agency (EEA), November 2008
  • [2] Krajowe Centrum Inwentaryzacji Emisji, 2008
  • [3] Reddy S., Johnson D., Gilmartin J.:"Fluor's Econamine FG PlusSM Technology for CO2 Capture at Coal-fired Power Plants"; presented at Power Plant Air Pollutant Control "Mega" Symposium; August 25-28, 2008, Baltimore
  • [4] Ciferno J.P.:"CO2 Capture: Comparison of Cost & Performance of Gasification and Combustion-based Plants", Workshop on Gasification Technologies; Denver, Colorado; March 14, 2007.
  • [5] "CO2 Capture from Flue Gases for Global Warming Issue", Mitsubishi Heavy Industries, Ltd., May 2007
  • [6] "MHI and E.ON Energies of Germany to Verify CO2 Recovery Technology for Coal-fired Power Generation Plants - 100 Tons/Day Facility to Start Operation in 2010", Mitsubishi Heavy Industries, Ltd., July 2008
  • [7] "MHI Carbon Capture Technology to be Demonstrated in United States on Southern Company Coal-fired Power Plant", Mitsubishi Heavy Industries, Ltd., May 2009
  • [8] Kozak F., Petig A., Morris E., Rhudy R., Thimsen D.: "Chilled Ammonia Process for CO2 Capture", ELSEVIER Energy Procedia 1 (2009), pp. 1419-1426
  • [9] "CO2 Scrubbing - Ultra-modern climate protection for coal-fired power plants", RWE Report on post-combustion CO2 capture, www.rwe.com/rwepower, February 2009
  • [10] Moser P., Schmidt S., Sieder G., Garcia H., Ciattaglia I., Klein H.: "Enabling Post Combustion Capture Optimization -The Pilot Plant Project at Niederaussem", ELSEVIER Energy Procedia 1 (2009), pp. 807-814
  • [11] Knudsen J.N., Jense J.N., Vilhelmsen P-J., Biede O.: "Experience with CO2 capture from coal flue gas in pilot-scale: Testing of different amine solvents", ibid, page 783-790
  • [12] Feron P.H.M.: "The potential for improvement of the energy performance of pulverized coal fired power stations with post-combustion capture of carbon dioxide", ibid, page 1067-1074
  • [13] "Fossil Energy Power Plant Desk Reference"; DOE/NETL- 2007/1282; Bituminous
  • [14] Coal and Natural Gas to Electricity Summary Sheets, May 2007
  • [15] "Current and Future IGCC Technologies"; DOE/NETL-2008/1337; October 16, 2008
  • [16] Renzenbrink W., Ewers J., Keller D., Wolf K.J., Apel W.: "RWE's 450 MW IGCC/CCS Project - Status and Outlook", ELSEVIER Energy Procedia 1 (2009) page. 615 - 622
  • [17] Adloch W., Sato H. Wolff J., Radtke K.: "High-Temperature Winkler Gasification of Municipal Solid Waste", Gasification Technologies Conference, San Francisco, CA (USA), October 8-11, 2000
  • [18] "Air-blown IGCC System - World's First Successful Continuous Three-month Operation and Commercial Application Plans"; Mitsubishi Heavy Industries Technical Review,Vol. 46, No. 1 (Mar. 2009)
  • [19] "Clean Coal Technologies in Japan", Japan Coal Energy Center, 2007
  • [20] "Oxyfuel Technology for CO2 Capture from Advanced Supercritical Pulverised Fuel Power Plants"; Sekkappan G., Melling P., Anheden M. and Ali; 8th International Conference on Greenhouse Gas Control Technologies, June 2006, Trondheim, Norway.
  • [21] "Oxy-combustion processes for CO2 capture from advanced supercritical pf and NGCC power plant"; Dillon D.J., Panesar R.S., Wall R.A., Allam R.J., White V., Gibbins J., Haines M.R; 7th International Conference on Greenhouse Gas Control Technologies, September 2004, Vancouver, Canada
  • [22] "CO2 Capture for PC-Boiler Using Flue-Gas Recirculation: Evaluation of CO2/Utilization/Disposal Options", Klara S.M., Cohen K., Doctor R.; National Energy Technology Laboratory, Project Facts: Sequestration 10/2002
  • [23] http://www.futuregenalliance.org/about.stm.
  • [24] Department of Energy. Record of Decision, FutureGen Project, Issued 14 July 2009
  • [25] Stromberg L.: "Oxyfuel - the way forward and the drivers", 1st International Oxyfuel Combustion Conference, Cottbus, Germany, September 8-11,2009
  • [26] Marion J.L.: "Alstom's Oxy-Firing Technology and Demonstration: Near, Medium and Long Term CO2 Solutions", ibid
  • [27] Kluger F., Monckert P., Krohmer B., G.-N. Stamatelopoulos, Jacoby J., Burchhardt U.: "Oxyfuel Pulverized Coal Steam Generator Development 30 MWth Pilot Steam Generator Commissioning and Testing", ibid
  • [28] Burchhardt U.: "Experiences from Commissioning and Test Operation of Vattenfall's Oxyfuel Pilot Plant", ibid
  • [29] Spero Ch.: "Callide Oxyfuel Project - Status & Development", ibid
  • [30] Eriksson T., Sippu O., Hotta A., Fan Z., Ruiz J.A. and all: "Development of Flexi-BurnTM CFB Technology Aiming at Fully Integrated CCS Demonstration", PowerGen Europe, Cologne, Germany May 26-28, 2009
  • [31] Seltzer A., Fan Z., Hack H.: "Design of a Flexi-BurnTM Pulverized Coal Power Plant for Carbon Dioxide Sequestration", 34 International Technical Conference on Coal Utilization & Fuel Systems, Clearwater, Fl USA, May 31 - June 4, 2009
  • [32] Kuivalainen R., Pikkarainen T., Leino T., Tourunen A.: "Development of CFB Technology to Provide Flexible Air/Oxy Operation for a Power Plant with CCS", ibid
  • [33] Hack H., Fan Z., Seltzer A.: "Utility-Scale Flexi-BurnTM CFB Power Plant To Meet the Challenge of Climate Change", ibid
  • [34] Hotta A.: "Oxycombustion Development by Foster Wheeler", "Clean coal" in the future, STV and Fortum Corporation, March 4, 2009
  • [35] Nowak W.: "Circulating Fluidized Bed Oxy-Combustion for CO2 Abatement - demonstration project", Częstochowa University of Technology
  • [36] Holt N.:" IGCC & Gasification for a Changing Marketplace", Gasification Technologies Conference - Washington, DC; October 2006
  • [37] http://ec.europa.eu/energy/publications/statistics/statistics_en.htm ; "EU Energy and Transport in Figures 2010"
  • [38] Rakowski J.: Obecne możliwości technologiczne ograniczania emisji CO2 z elektrowni węglowych, Energetyka 2008, nr 6 str. 95-408
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS1-0040-0056
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