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TECHNOLOGIES OF BIOMASS GASIFICATION Aleksander Sobolewski, Sławomir Stelmach, Tomasz Iluk Institute for Chemical Processing of Coal Zamkowa 1 St., 41-803 Zabrze, Poland
Scope of presentation 1. Information about IChPW. 2. What is gasification ? 3. Global situation with regard to solid fuel gasification. 4. Gasification of biomass - why?  5. Biomass gasification reactors. 6. Examples of small-scale biomass gasification technologies. 7. Example of large-scale biomass gasification technolog y . 8. Problems associated with biomass gasification. 9. Summary.
Information about IChPW … . to deliver the innovation knowledge to support improvement in competitiveness of the enterprises from the carbochemistry, energy, mining and processing of waste sectors, that makes it possible to use efficiently fossil, renewable and alternative fuels. R&D governmental organisation 224  employees 171 scientists & researchers Fuels Cokemaking Waste  Processing Heat & Power Production
Slovakia Czech Republic Russia Warszawa Gdansk Wroclaw Poznan Kombinat Koksochemiczny „Zabrze”  (Coke plant „Jadwiga”) Coke plant BO-CARBO Coke plant at  Huta  T. Sendzimira  K rakow Coke plant „Walbrzych” Coke plant -  „Czestochowa” Steel Works Coke plant „Zdzieszowice”  B a l t i c  S e a Kombinat Koksochemiczny „Zabrze”  (Coke plant „Radlin”) Coke plant „Przyjazn” Bytom Dabrowa Gornicza Cokemaking industry (high temperature pyrolysis/slow heating rate) Zdzieszowice Walbrzych Czestochowa Nowa Huta Radlin Zabrze Institute for Chemical Processing of Coal Zabrze - Poland
Power industry   Slovakia Russia Warszawa Gdańsk Wrocław Poznań B a l t i c  S e a ZE Ostrołęka  Elektrownia Opole  Elektrownia Połaniec EC Żerań  Elektrownia Konin  Elektrownia Stalowa Wola  K raków Elektrownia Skawina  KOGENERACJA SA  Elektrownia Dolna Odra  Elektrownia Szczecin  Elektrownia Rybnik  EC Knurów  EC Dębieńsko  Elektrownia Siersza  Elektrownia Jaworzno  Elektrownia Łaziska Institute for Chemical Processing of Coal Zabrze - Poland
G asification : past,  current  and future  research activity in the  Institute 2011 2012 R&D Programme: Advanced Technologies for Energy Generation Workpackage: Development of integrated technologies for production   of fuels and energy from biomass, agricultural waste   and other materials CLEAN   COAL TECHNOLOGY CENTER R&D Programme: Advanced Technologies for Energy Generation Workpackage: Development of coal gasification technology for high production of fuels and energy
Gasification The basic gasification process can be described   in a simplified way by the following chemical equations: C(fuel) + O 2  = CO 2  + heat  (exothermic reaction) C + H 2 O(steam) = CO + H 2   (endothermic reaction) C + CO 2  = 2CO  (endothermic reaction) C + 2H 2  = CH 4   (endothermic reaction) CO + H 2 O = CO 2  + H 2   (exothermic reaction) CO + 3H 2  = CH 4  + H 2 O  (exothermic reaction) T hermochemical process of oxidising transformation of solid fuels (less frequently liquid ones as well) into a gaseous energy carrier (combustible gas)
Gasification compared to other processes
World gasification capacity source: http://www.netl.doe.gov
Gasification of biomass - why? ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Types of reactors Updraft gasifier Downdraft gasifier Fluidized-bed gasifier Circulating fluidized-bed gasifier
General characteristics of biomass gasification reactors   Parameter Downdraft gasifier Updraft gasifier Circulating fluidized-bed gasifier ,[object Object],[object Object],[object Object],[object Object],< 25 <6 20-100 < 60 <25 5-100 < 25 <25 <20 ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],800 4-6 0,01-6 0,1-8 15-21 10-22 11-13 1-5 200-400 4-6 1-150 0,1-3 10-14 15-20 8-10 2-3 850 5-6,5 2-30 8-100 15-22 13-15 13-15 2-4 Estimated technology scale  (MW th ) 1 10 100 Flexibility due to the change of scale  poor good very good
Examples of small scale biomass gasification technologies Zabrze – Poland ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Examples of small scale biomass gasification technologies Louka – Czech Republik ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],J. Najser, T. Ochodek, R. Chłond, Energy Market 6(85) (2009) 68-74 .
Examples of small scale biomass gasification technologies Güssing - Austria http://www.repotec.at, 05.2011 ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Example of large scale biomass gasification technologies Skive - Denmark J. Patel, http://www.forestprod.org/smallwood04patel.pdf ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Biomass co-gasification with coal 1 – reactor, 2 – riser, 3 – expander, 4 – cyclone, 5 – recirculated char tank, 6 – heat carrier (char) dispenser, 7 – cyclones battery, 8 – fine char tank, 9 – gas combustion chamber, 10 – fuel tank,   11 – feeding screw dispenser, 12 – feeding screw, 13 – fuel gas cylinders, 14 – gas flare Gas composition
Problems associated with biomass gasification ,[object Object],[object Object],Gas Fuel Contamination   Consequences   Dust Erosion, emissions into the atmosphere   Tars Deposition on the inner parts of the installation, filters clogging   Alkali metals   High-temperature corrosion Chlorine, sulfur   Corrosion, emissions into the atmosphere   Parametr Downdraft reactor   Updraft reactor Requirements   Engine Turbine LHV ,  MJ/m 3 n 4 -6 4 -6 >4,0 >4,0 Tars ,  g/m 3 n 1-15 0, 5 -6 0,100 (0,050) < 0,005 Dust ,  g/m 3 n 0,1-3 0,1 - 8 0,050 (0,005) < 0,001 Alkali metals , ppm bd bd 1 -2 0,2 - 1
Summary ,[object Object],[object Object],[object Object],[object Object],[object Object]
INSTYTUT CHEMICZNEJ PRZERÓBKI WĘGLA (Institute For Chemical Processing Of Coal) ul. Zamkowa 1; 41-803 Zabrze, Poland Phone: +48 32 271 00 41 Fax: +48 32 271 08 09 Tax ID No. (NIP):   648-000-87-65 Nat. Business Reg. No. (REGON):  000025945 E-mail: [email_address] Internet:  www.ichpw.zabrze.pl

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4.15 - "Technologies of Biomass Gasification" - Aleksander Sobolewski, Sławomir Stelmach, Tomasz Iluk [EN]

  • 1. TECHNOLOGIES OF BIOMASS GASIFICATION Aleksander Sobolewski, Sławomir Stelmach, Tomasz Iluk Institute for Chemical Processing of Coal Zamkowa 1 St., 41-803 Zabrze, Poland
  • 2. Scope of presentation 1. Information about IChPW. 2. What is gasification ? 3. Global situation with regard to solid fuel gasification. 4. Gasification of biomass - why? 5. Biomass gasification reactors. 6. Examples of small-scale biomass gasification technologies. 7. Example of large-scale biomass gasification technolog y . 8. Problems associated with biomass gasification. 9. Summary.
  • 3. Information about IChPW … . to deliver the innovation knowledge to support improvement in competitiveness of the enterprises from the carbochemistry, energy, mining and processing of waste sectors, that makes it possible to use efficiently fossil, renewable and alternative fuels. R&D governmental organisation 224 employees 171 scientists & researchers Fuels Cokemaking Waste Processing Heat & Power Production
  • 4. Slovakia Czech Republic Russia Warszawa Gdansk Wroclaw Poznan Kombinat Koksochemiczny „Zabrze” (Coke plant „Jadwiga”) Coke plant BO-CARBO Coke plant at Huta T. Sendzimira K rakow Coke plant „Walbrzych” Coke plant - „Czestochowa” Steel Works Coke plant „Zdzieszowice” B a l t i c S e a Kombinat Koksochemiczny „Zabrze” (Coke plant „Radlin”) Coke plant „Przyjazn” Bytom Dabrowa Gornicza Cokemaking industry (high temperature pyrolysis/slow heating rate) Zdzieszowice Walbrzych Czestochowa Nowa Huta Radlin Zabrze Institute for Chemical Processing of Coal Zabrze - Poland
  • 5. Power industry Slovakia Russia Warszawa Gdańsk Wrocław Poznań B a l t i c S e a ZE Ostrołęka Elektrownia Opole Elektrownia Połaniec EC Żerań Elektrownia Konin Elektrownia Stalowa Wola K raków Elektrownia Skawina KOGENERACJA SA Elektrownia Dolna Odra Elektrownia Szczecin Elektrownia Rybnik EC Knurów EC Dębieńsko Elektrownia Siersza Elektrownia Jaworzno Elektrownia Łaziska Institute for Chemical Processing of Coal Zabrze - Poland
  • 6. G asification : past, current and future research activity in the Institute 2011 2012 R&D Programme: Advanced Technologies for Energy Generation Workpackage: Development of integrated technologies for production of fuels and energy from biomass, agricultural waste and other materials CLEAN COAL TECHNOLOGY CENTER R&D Programme: Advanced Technologies for Energy Generation Workpackage: Development of coal gasification technology for high production of fuels and energy
  • 7. Gasification The basic gasification process can be described in a simplified way by the following chemical equations: C(fuel) + O 2 = CO 2 + heat (exothermic reaction) C + H 2 O(steam) = CO + H 2 (endothermic reaction) C + CO 2 = 2CO (endothermic reaction) C + 2H 2 = CH 4 (endothermic reaction) CO + H 2 O = CO 2 + H 2 (exothermic reaction) CO + 3H 2 = CH 4 + H 2 O (exothermic reaction) T hermochemical process of oxidising transformation of solid fuels (less frequently liquid ones as well) into a gaseous energy carrier (combustible gas)
  • 8. Gasification compared to other processes
  • 9. World gasification capacity source: http://www.netl.doe.gov
  • 10.
  • 11. Types of reactors Updraft gasifier Downdraft gasifier Fluidized-bed gasifier Circulating fluidized-bed gasifier
  • 12.
  • 13.
  • 14.
  • 15.
  • 16.
  • 17. Biomass co-gasification with coal 1 – reactor, 2 – riser, 3 – expander, 4 – cyclone, 5 – recirculated char tank, 6 – heat carrier (char) dispenser, 7 – cyclones battery, 8 – fine char tank, 9 – gas combustion chamber, 10 – fuel tank, 11 – feeding screw dispenser, 12 – feeding screw, 13 – fuel gas cylinders, 14 – gas flare Gas composition
  • 18.
  • 19.
  • 20. INSTYTUT CHEMICZNEJ PRZERÓBKI WĘGLA (Institute For Chemical Processing Of Coal) ul. Zamkowa 1; 41-803 Zabrze, Poland Phone: +48 32 271 00 41 Fax: +48 32 271 08 09 Tax ID No. (NIP): 648-000-87-65 Nat. Business Reg. No. (REGON): 000025945 E-mail: [email_address] Internet: www.ichpw.zabrze.pl

Editor's Notes

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  2. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
  3. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
  4. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
  5. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
  6. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
  7. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
  8. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
  9. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
  10. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
  11. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
  12. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
  13. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
  14. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
  15. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
  16. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
  17. Aby zmienić liczbę całkowitą slajdów wyświetlaną w stopce slajdu należy po zakończeniu prezentacji wejść do menu WIDOK -&gt; WZORZEC -&gt; WZORZEC SLAJDÓW i wstawić odpowiednią liczbę a następnie kliknąć ZAMKNIJ WIDOK WZORCA
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