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Zgazowanie paliw stałych - stan obecny i przewidywane kierunki rozwoju

Identyfikatory
Warianty tytułu
EN
Gasification of solid fuels - the actual state and expected directions of development
Języki publikacji
PL
Abstrakty
PL
W pracy zaprezentowano wyniki przeglądu światowego stanu rozwoju technologii zgazowania obejmującego istniejące, będące w fazie budowy oraz planowane do wdrożenia do roku 2016 instalacje komercyjne. Wyniki przeanalizowano pod względem wykorzystywanych paliw, wytwarzanych produktów, stosowanych technologii, a także lokalizacji geograficznej, ze szczególnym uwzględnieniem układów wykorzystujących węgiel jako paliwo podstawowe. Dokonano przeglądu głównych kierunków rozwoju technologii na świecie i w kraju. Omówiono wybrane rozwiązania aparaturowe technologii zgazowania.
EN
In this paper results of review on global state of development of gasification technologies has been made, comprising of commercial scale plants which are either currently operating, under-construction or planned to run until 2016. The results have been analyzed regarding type of solid fuel, products utilization, implemented technologies as well as geographical location with particular emphasis on coal-fed systems. A review on main directions of gasification technologies development in Poland and in the world has been made. Selected apparatus solutions have been discussed in detail.
Czasopismo
Rocznik
Tom
Strony
191--201
Opis fizyczny
Bibliogr. 27 poz., rys., tab.
Twórcy
Bibliografia
  • 1. Ullmann’s Encyclopedia of industrial chemistry, 6th edition, 2002 Electronic Release.
  • 2. 2010 Worldwide Gasification Database (Excel file); available at http://www.netl.doe.gov/ technologies/coalpower/gasification/ worlddatabase/index.html
  • 3. Gasification World Database 2007 - Current Industry Status, Robust Growth Forecast, Department of Energy USA, National Energy Technology Laboratory, 2007.
  • 4. Liu H., OMB Gasification - Industrial Application Updates of Slurry Feeding & Developments of Dry Feeding; Paper presented at Gasification Technologies Conference, San Francisco 2010.
  • 5. Advanced Energy Systems - Gasification Systems, Project Portfolio; US DOE/NETL, 2012. Avaiable in: http://www.netl.doe. gov/ technologies/ coalpower/ gasification/ pubs/pdf/ Gasification-SystemsProjectPortfolio.pdf
  • 6. WORK PROGRAMME 2007; COOPERATION; THEME 5; ENERGY, European Commission C(2007)560; 26.02.2007.
  • 7. Gasification Technologies; Gasification Markets and Technologies — Present and Future, An Industry Perspective; U.S. Department of Energy Report, June 2002.
  • 8. Gupta R., Turk B., Lesemann M., RTI/Eastman Warm Syngas Clean-up Technology:Integration with Carbon Capture, Gasification Technologies Conference 2009.
  • 9. Turk B. (RT1 International),Schlather J. (EastmanChemica Company) „Novel Technology Platform for Warm Syngas Clean -up: Progress from Field Testing with Coal Derived Syngas”; 2n' International Freiberg Conference on IGCC &XtL Technologie 2007.
  • 10. Flytzani-Stephanopaulos M., Qi X., Kronewitter S., Water -gas Shift with Integrated Hydrogen Separation Process. Fina Report,Tufts University, Department of Chemical and Biologica Engineering 2004.
  • 11. Ciocco M.V., Morreale B.D., Rothenberger K.S., Howan B.H., Killmeye R.P., Enick R.M., Bustamante F., Water Gas Shift Membrane Reactor Studies. National Energy Technology Laboratory. www.netl.doe.gov/.../WGS%20Membrane%20Reactor%2( Studies.pdf
  • 12. Lund C.R.F., Water-Gas Shift Kinetics over Iron Oxide Catalysts at Membrane Reactor Conditions. DE-FG2699-FT40590 Chemical Engineering Department, University at Buffalo.
  • 13. Pex P.P.A.C., van Delft Y.C., Silica Maembranes for Hydrogen Fuel Production by Membrane Water Gas Shift Reaction and Development of a Mathematical Model for a Membrane Reactor. Carbon Dioxide Capture for Storage in Deep Geologic Formations - Results from the C02 Capture and Separation of Carbon Dioxide from Combustion Sources, Volume 1, Chapter 17.
  • 14. Current and Future Technologies for Gasification-Based Power Generation, Volume 2: A Pathway Study Focused on Carbon Capture Advanced Power Systems R&D Using Bituminous Coal, October 7, 2010; DOE/NETL-2009/1389, available at http://www.netl.doe.gov/technologies/coalpower/gasification.
  • 15. Higman C., Van der Burgt M.J., Gasification. Gulf Professional Publishing, Elsevier Inc. 2008.
  • 16. Yu Z., Zhou Z., Yu G., Opposed Multi—Burner Gasification Technology -Seven New Projects in China; Paper presented at Gasification Technologies Conference, San Francisco 2007.
  • 17. Fuchen Wang, Coal gasification technology in China: Application and development, available at -ittp://www.chinainvestsinamerica.com
  • 18. Pinon Pine IGCC Project (DE-FC21-92MC29309); Final Technical Report; 1992-2001.
  • 19. Renzenbrink W., Wischnewski R., Engelhard J., Mittelstadt A., High temperature Winkler (HTW) coal gasification; http://www. ;asification.org
  • 20. Operation of the PSDF transport gasifier; Pittsburgh coal inference, 2002, USA.
  • 21. The GTI Gasification Process; http://www.gastechnology.org
  • 22. Gasification Plant Cost and Performance Optimization; Task 3 Final Report; DOE Contract No. DE-AC26-99FT40342; Nexant/ GTI/NETL; 2005.
  • 23. SES Obtains Approvals for Expansion of HaiHua Gasification Project; Mon Aug 18, 2008, WWW.routers.com
  • 24. KRW Gasifier IGCC Base Cases PED-IGCC-98-005, NETL.
  • 25. Molburg J.C., Thimmapuram PR., KRW Oxygen-Blown Gasification Combined Cycle: Carbon Dioxide Recovery, Transport, and Disposal.
  • 26. Irfan MF., Usman MR., Kusakabe K., Coal gasification in CO, atmosphere and its kinetics since 1948: A brief review. Energy, 2011, t. 36, s. 12.
  • 27. Ratafia-Brown J., Manfredo L., Hoffmann J., Ramezan M, SAIC; Major environmental aspects of Gasification-based power generation Technologies; Final Report, 2002. Project Prepared for Gasification Technologies Program, National Energy Technology Laboratory, U.S. Department of Energy.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPP3-0002-0096
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