K.D. Panopoulos
National Technical University of Athens
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Publication
Featured researches published by K.D. Panopoulos.
Volume 2: Aircraft Engine; Coal, Biomass and Alternative Fuels; Cycle Innovations | 2013
Kostantinos Atsonios; A. Koumanakos; K.D. Panopoulos; A. Doukelis; Emmanuel Kakaras
Carbon Capture and Storage can either concern the removal of carbon as CO2 in flue gases (post-combustion option) or before its combustion in a Gas Turbine (pre-combustion option). Among the numerous CO2 capture technologies, amine scrubbing (MEA and MDEA), physical absorption (Selexol™ and Rectisol™) and H2 separator membrane reactors are investigated and compared in this study. In the pre-combustion options, the final fuel combusted in the GT is a rich-H2 fuel. Process simulations in ASPEN Plus™ showed that the case of H2 separation with Pd-based membranes has the greatest performance as far as the net efficiency of the energy system is concerned. The economic assessment reveals that the technology is promising in terms of cost of CO2 avoided, provided that the current high membrane costs are reduced.Copyright
Journal of Power Sources | 2006
K.D. Panopoulos; L. Fryda; J. Karl; S. Poulou; Emmanuel Kakaras
Energy Conversion and Management | 2008
L. Fryda; K.D. Panopoulos; E. Kakaras
Powder Technology | 2008
L. Fryda; K.D. Panopoulos; E. Kakaras
Journal of Power Sources | 2007
Ph. Hofmann; A. Schweiger; L. Fryda; K.D. Panopoulos; U. Hohenwarter; Jens Dall Bentzen; J.P. Ouweltjes; Jesper Ahrenfeldt; Ulrik Birk Henriksen; Emmanuel Kakaras
Journal of Power Sources | 2006
K.D. Panopoulos; L. Fryda; J. Karl; S. Poulou; Emmanuel Kakaras
Fuel | 2006
L. Fryda; K.D. Panopoulos; Panagiotis Vourliotis; E. Pavlidou; Emmanuel Kakaras
International Journal of Hydrogen Energy | 2008
Ph. Hofmann; K.D. Panopoulos; L. Fryda; A. Schweiger; J.P. Ouweltjes; J. Karl
Energy | 2008
L. Fryda; K.D. Panopoulos; J. Karl; Emmanuel Kakaras
Energy | 2015
Konstantinos Braimakis; Markus Preißinger; Dieter Brüggemann; Sotirios Karellas; K.D. Panopoulos