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Energy analysis of gas combined heat and power plant integrated with biomass gasification

Autorzy
Identyfikatory
Warianty tytułu
Konferencja
ENERGETYKA 2004 / International Scientific and Technical Conference [3; 2004; Wrocław, Poland]
Języki publikacji
EN
Abstrakty
EN
In the paper there is presented the complex energy analysis of two technological systems of gas combined heat and power (CHP) plant integrated with biomass gasification. The basis of energy analysis performed is the elaborated mathematical model of main elements of the technological system of this CHP plants. The mathematical model of biomass gasification includes the system of equations which describe chemical, physical and energy phenomena occurring in gas generator. The solution of mathematical model of gasification process allows one to determine the composition of produced gas. In equations which describe energy processes in gas generator and gas turbine block the physical enthalpies of produced gas, gasifying medium and oxidizer (air) arc determined with the help of statistical physics. Tn the paper there is presented the results of the computer simulation of gasification of biomass with the help of various kinds of gasifying medium and the results of simulation of energy efficiency (energy utilization factor), efficiency of electric energy generation and (regeneration index (power to heat ratio) for two technological systems of gas CUP plant integrated with biomass gasification.
Rocznik
Strony
643--650
Opis fizyczny
Bibliogr.16 poz.
Twórcy
  • Poznań University of Technology
Bibliografia
  • [1] ANDERL H., MORY DR. A., ZOTTER Т., Biococomb -Gasification of Biomass and Co-Combustion of the Gas in a Pulverized-Coal-Boiler. Proceedings of the 15th International Conference on Fluidized Bed Combus¬tion, Paper No. FBC99-0029, May 16 - 19,1999 Savannah, Georgia .
  • [2] CHEN G., AN DRIES J., SPLIETHOFF FANG M.: Kinetics of Biomass Wastes Pyrolisis for Fuel Gas Production. Proceedings of the 15th International Conference on Efficiency, Costs, Optimization, Simulation and Environmental Impact of Energy Systems, Berlin, 2002 Volume I, pp. 630 - 637.
  • [3] CORTI A., LOMBARDI L., Performance analysis of a Biomass Integrated Gasification Combined Cycle With Reduced C02 Emissions, Proceedings of the 13th International Conference on Efficiency, Costs, Optimization, Simulation and Environmental Impact of Energy Systems. 2002, Berlin, Germany Part 4, pp.781- 787.
  • [4] DONATINI F., GIGLIUCCI G., ZAMPARELLI C, HERZOG N., PRODUZIONE-RICERCA E., Integration of Biomass into Natural Gas Fired Combined Cycles - Thermodynamic and Economical Analyses, Proceedings of the 13th International Conference on Efficiency, Costs, Optimization, Simulation and Environmental Impact of Energy Systems. 2002, Berlin, Germany, pp. 695-703.
  • [5] Gasification Based Biomass http://www.eere.energy.gov/power/pdfs/bio_gasification.pdf.
  • [6] KNOEF IR. H.A.M., Gasification of Biomass & Waste - Practical Experience, III. International Slovak Biomass Forum, 2003.
  • [7] MINKOVA V., MARINOV S.P., ZANZI R., BJORNBOM E., BUDINOVA Т., STEFANOVA M., LAKO V L., Tbermochemical Treatment of Biomass in a Flow of Steam or in a Mixture of Steam and Carbon Dioxide, Elsevier, Fuel Processing Technology 62 2000 45-52.
  • [8] MORRIS M., WALDHEIM L., Efficient Power Generation From Wood Gasification. Proceedings of International Conference "Gasification for the Future" Noordwik, The Netherlands, 2000.
  • [9] OLSSON F. TORISSON Т.: Cogeneration Based on Gasified Biomass - a Comparison of Concepts. Proceedings of the 13th International Conference on Efficiency, Costs, Optimization, Simulation and Environmental Impact of Energy Systems. Enschede, 2000. Part 4 pp. 1945-1957
  • [10] PURVIS C.R., CRAIG J.D. A Small Scale Biomass Fueled Gas Turbine Power Plant, The Eight Biennial National Bioenergy Conference, Madison, WI USA, 1998.
  • [11] ROMEY I. , ADORNI M., WARTMANN J.: Innovative Components for Decentralised Combined Heat and Power Generation from Biomass Gasification.
  • [12] RYDSTRAND M. C, WESTMARK M. O, BARTLETT M. A. An Analysis of the Efficiency and Economy of Humidified Gas Turbines in District Heating Applications. Proceedings of the 13th International Conference on Efficiency, Costs, Optimization, Simulation and Environmental Impact of Energy Systems. 2002, Berlin, Germany Part 4, pp.781-787.
  • [13] VERINGA H.J., UIL H. DEN, MOZAFFARIAN H, Biomass and Co-generation, Proceedings of the 13th International Conference on Efficiency, Costs, Optimization, Simulation and Environmental Impact of Energy Systems. Enschede, 2000. Part 4 pp.1799-1812.
  • [14] WILLEBOER W., Biomass gasification in Geertruidenberg, the Netherlands, Proceedings of the 13th International Conference on Efficiency, Costs, Optimization, Simulation and Environmental Impact of Energy Systems. Enschede, 2000. Part 4 , pp. 1869-1875.
  • [15] XIAO Y.H., CAI R.X., LIN R.M. Modeling HAT Cycle and Thermodynamic Evaluation Proceedings of the International Conference on Efficiency, Costs, Optimization, Simulation and Environmental Aspects of Energy Systems, Stockholm, 1996.
  • [16] ZAPOROWSKI В. Analysis of Coal Gasification Process for Demand of Clean Coal Technology. Proceedings of the Second International Conference on Combustion Technologies for Clean Environment Lisbon, 1993, Vol. 1,17.4.24-17.4.32.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPP1-0057-0070
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