High temperature solid oxide fuel cell integrated with novel allothermal biomass gasification. Part II: Exergy analysis

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Published in:Journal of power sources Vol. 159; no. 1; pp. 586 - 594
Main Authors: PANOPOULOS, K. D, FRYDA, L, KARL, J, POULOU, S, KAKARAS, E
Format: Journal Article
Language:English
Published: Lausanne Elsevier Sequoia 13-09-2006
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Author KAKARAS, E
POULOU, S
PANOPOULOS, K. D
FRYDA, L
KARL, J
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  organization: Laboratory of Steam Boilers and Thermal Plants, School of Mechanical Engineering, Thermal Engineering Section, National Technical University of Athens, 9 Heroon Polytechniou Ave, Zografou 15780, Greece
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  organization: Laboratory of Steam Boilers and Thermal Plants, School of Mechanical Engineering, Thermal Engineering Section, National Technical University of Athens, 9 Heroon Polytechniou Ave, Zografou 15780, Greece
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  organization: Institute of Thermal Power Systems, Technical University of Munich, Boltzmannstrasse 15, 85747 Garching, Germany
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  organization: Hyperion Systems Engineering Ltd, Nicosia 1075, Cyprus
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  fullname: KAKARAS, E
  organization: Laboratory of Steam Boilers and Thermal Plants, School of Mechanical Engineering, Thermal Engineering Section, National Technical University of Athens, 9 Heroon Polytechniou Ave, Zografou 15780, Greece
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Issue 1
Keywords Fluidized bed reactor
Heat production
Aspen Plus
Biomass
Solid oxide fuel cell
Exergy analysis
Gasification
Modelling
Exergy
Electric power production
High-temperature fuel cells
Combined power plant
SOFC
Language English
License CC BY 4.0
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PublicationTitle Journal of power sources
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StartPage 586
SubjectTerms Applied sciences
Combined power plants
Energy
Energy. Thermal use of fuels
Equipments for energy generation and conversion: thermal, electrical, mechanical energy, etc
Exact sciences and technology
Fuel cells
Installations for energy generation and conversion: thermal and electrical energy
Title High temperature solid oxide fuel cell integrated with novel allothermal biomass gasification. Part II: Exergy analysis
Volume 159
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