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Wychwytywanie CO2 w energetyce

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Warianty tytułu
Języki publikacji
PL
Abstrakty
EN
Due to the European obligations to swich to low-emission technologies, the development of clean technologies must be maintained in parallel to the technologies of enhancing efficiencies and reducing CO2 emissions. This paper revieves of the methods for CO2 separation from flue gases. These methods include absorption processes, membrane separations, cryogenic separation and adsorption processes on which the special attention was turned.
Rocznik
Strony
60--68
Opis fizyczny
Bibliogr. 19 poz., rys.
Twórcy
autor
  • Częstochowa University of Technology , Department of Heating, Ventilation and Air Protection, ul. Dąbrowskiego 73, 42-200 Częstochowa, Poland
  • Częstochowa University of Technology , Department of Heating, Ventilation and Air Protection, ul. Dąbrowskiego 73, 42-200 Częstochowa, Poland
Bibliografia
  • [1] Komunikat Komisji Wspólnot Europejskich - Europejska Polityka Energetyczna, Bruksela 10.01.2007
  • [2] METZ B., DAVIDSON O. Carbon Dioxide Capture and Storage. IPCC Special Report, Cambridge University Press, New York, USA, 2005.
  • [3] HENDRIKS CH. Carbon Dioxide removal from Coal-Fired Power Plants', Kluwer Academic Publishers, Dordrecht, 1994.
  • [4] Proceedings, Dechema Workshop on C02 Capture, Utilization and Sequestration, 21-22, 2008,Frankfurt, Germany
  • 15] SMITH I.M. CO 2 reduction - prospects for coal. IE A COAL RESEARCH, The clean coal centre, 1999.
  • [6] WOLSKY A.M., DANIELS E.J., JODY B.J. C02 capture from the flue gas of conventional fossil-fuel-fired Power Plant. Environmental Progress, Vol. 13, No.3, (1994), pp. 214-219.
  • [7] REPORT IEA GREENHOUSE R&D PROGRAMME: Carbon dioxide capture from power stations.http://www.ieagreen.org.uk/
  • [8] HERZOG H.J. Carbon dioxide removal. Proceedings of the third international conference on carbon dioxide removal, Cambridge, MA, USA,1996, Energy Conversion and Managements 997, Vol. 38, pp. 703.
  • [9] SCHRATTENHOLZER L., AKUTSU N. Carbon removal, fuel cycle shift and efficiency measures; a sectoral view. In: Energy technology strategy 1995-2030, Opportunities arising from the threat of climate change. Seria A (ed), Seville, Spain, European Commission Institute for prospective Technological Studies, pp. 45-58, 1998.
  • [10] MEISEN A., SHUAI X. Research and development issues in CO2 capture. In: carbon dioxide removal. Proceedings of the third international conference on carbon dioxide removal, Cambridge, MA, USA, 9-11 Sep 1996. Herzog H.J. (ed). Energy Conversion and Management; 38 (suppl); pp. 37-42, 1997.
  • [11] MAJCHRZAK-KUCĘBA I., Praca doktorska Badania usuwania i zagospodarowania CO2 ze spalin kotłowych, Częstochowa, 2001
  • [12] MAJCHRZAK-KUCĘBA L, NOWAK W, A thermogravimetric study of the adsorption of CO2 on zeolites synthesizedfrom fly ash, Thermochimica Acta, Vol. 437, (2005), pp. 67-74.
  • [13] SAJI A., ICHIKAWA M., MAKIHAARA M. Study on technologies for isolating and recovering C02 from boiler exhaust gas. Chubu Denryoku Kaabushiki Kaisha Kenkyu Shiiryu; Vol. 98, pp. 52-58, 1997.
  • [14] RIEMER P.W.F., WEBSTER I.C., ORMEROD W.G., AUDUS H. Results and full fuel cycle study plans from the IEA greenhouse gas research and development programme. Fuel, Vol. 73, No. 7, pp. 1151-1158,1994.
  • [15] XU X., SONG CIL, ANDRESEN J.M., MILLER B., G., SCARONI A.W., Microporous and Mesoporous Materials, Vol. 62, (2003), pp. 29-45
  • [16] XU X. SONG CH, ANDERSEN J. M., MILLER B. G., SCARONI, A. W., Adsorption of carbon dioxide from flue gas of natural-fixed boiler by a novel nanoporotis "molecular basket" adsorbent. Fuel Processing Technology, Vol. 86, (2005), pp. 1457-1472.
  • [17] HAYOSHI N., YOGO K., YASHIMA T., Adsorption characteristics of carbon dioxide on organically functionafunctionalized SBA-15. Microporous and Mesoporous Materials, Vol. 84, (2005), pp. 357-365.
  • [18] HAYASHI H.., TANIUCHI J., I-FURUYASHIKI N., SUGIYAMA S., HIRANO S., SHIGEMOTO N., NONAKA T. Efficient recovery of carbon dioxide from fine gases of coal-fired Power Plants by cyclic fixed-bed operations overK2CO3-on-carbon. Ind. Eng. Chem. Res., Vol. 37, No.l, pp. 185-191,1998.
  • [19] INUI T., OKUGAWA Y., YASUDA M. Relationship between properties of various zeolites and their CO2 adsorption behaviours in pressure swing adsorption operation. Ind. Ing. Chem. Res., vol. 27, No.7, pp.1103-1109,1988.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-72eb1383-64e3-49a6-b459-1b90a70f8fbd
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