Finding a way for mitigating climate change is one of the main challenges of our generation. Sorption-enhanced gasification (SEG) is a process by which syngas as an important intermediate for the synthesis of e.g., dimethyl ether (DME), bio-synthetic natural gas (SNG) and Fischer-Tropsch (FT) products or hydrogen can be produced by using biomass as feedstock. It can, therefore, contribute to a replacement for fossil fuels to reduce greenhouse gas (GHG) emissions. SEG is an indirect gasification process that is operated in a dual-fluidized bed (DFB) reactor. By the use of a CO2-active sorbent as bed material, CO2 that is produced during gasification is directly captured. The resulting enhancement of the water-gas shift reaction enables the production of a syngas with high hydrogen content and adjustable H-2/CO/CO2-ratio. Tests were conducted in a 200 kW DFB pilot-scale facility under industrially relevant conditions to analyze the influence of gasification temperature, steam to carbon (S/C) ratio and weight hourly space velocity (WHSV) on the syngas production, using wood pellets as feedstock and limestone as bed material. Results revealed a strong dependency of the syngas composition on the gasification temperature in terms of permanent gases, light hydrocarbons and tars. Also, S/C ratio and WHSV are parameters that can contribute to adjusting the syngas properties in such a way that it is optimized for a specific downstream synthesis process.
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Natl Res Council CNR, Inst Sci & Technol Sustainable Energy & Mobil STEM, Piazzale Vincenzo Tecchio 80, I-80125 Naples, ItalyNatl Res Council CNR, Inst Sci & Technol Sustainable Energy & Mobil STEM, Piazzale Vincenzo Tecchio 80, I-80125 Naples, Italy
Massa, Fiorella
Coppola, Antonio
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Natl Res Council CNR, Inst Sci & Technol Sustainable Energy & Mobil STEM, Piazzale Vincenzo Tecchio 80, I-80125 Naples, ItalyNatl Res Council CNR, Inst Sci & Technol Sustainable Energy & Mobil STEM, Piazzale Vincenzo Tecchio 80, I-80125 Naples, Italy
Coppola, Antonio
Montagnaro, Fabio
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Univ Naples Federico II, Dept Chem Sci, Complesso Univ Monte St Angelo, I-80126 Naples, ItalyNatl Res Council CNR, Inst Sci & Technol Sustainable Energy & Mobil STEM, Piazzale Vincenzo Tecchio 80, I-80125 Naples, Italy
机构:
Lappeenranta Lahti Univ Technol, LUT Sch Energy Syst, POB 20, FI-53851 Lappeenranta, FinlandLappeenranta Lahti Univ Technol, LUT Sch Energy Syst, POB 20, FI-53851 Lappeenranta, Finland
Pitkaoja, Antti
Ritvanen, Jouni
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Lappeenranta Lahti Univ Technol, LUT Sch Energy Syst, POB 20, FI-53851 Lappeenranta, FinlandLappeenranta Lahti Univ Technol, LUT Sch Energy Syst, POB 20, FI-53851 Lappeenranta, Finland
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Institute of Chemical Engineering, Vienna University of Technology, ViennaInstitute of Chemical Engineering, Vienna University of Technology, Vienna
Pfeifer C.
Koppatz S.
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Institute of Chemical Engineering, Vienna University of Technology, ViennaInstitute of Chemical Engineering, Vienna University of Technology, Vienna
Koppatz S.
Hofbauer H.
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Institute of Chemical Engineering, Vienna University of Technology, ViennaInstitute of Chemical Engineering, Vienna University of Technology, Vienna