UKCCSRC Call 1 Project final report: Oxyfuel and exhaust gas recirculation processes in gas turbine combustion for improved carbon capture performance
This poster on the UKCCSRC Call 1 project Oxyfuel and exhaust gas recirculation processes in gas turbine combustion for improved carbon capture performance was presented at the CSLF Call project poster reception, London, 27.06.16. Grant number: UKCCSRC-C1-26. This research is concerned with oxyfuel combustion in gas turbine applications, in particular concentrating on the use of modern swirl-stabilised burners. Oxyfuel is considered a particularly challenging idea, since the resultant burning velocity and flame temperatures will be significantly higher than what might be deemed as a practical or workable technology. For this reason it is widely accepted that EGR-derived CO2 will be used as a diluent and moderator for the reaction (in essence replacing the role of atmospheric nitrogen). The key challenges in developing oxyfuel gas turbine technology are therefore: • Flame stability at high temperatures and burning rates. • The use of CO2 as a combustion diluent. • Potential for CO emission into the capture plant. • Wide or variable operating envelopes across diluent concentrations. • Differences in the properties of N2 and CO2 giving rise to previously unmeasured flame heat release locations.
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http://www.bgs.ac.uk/ukccs/accessions/index.html#item75709
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http://data.bgs.ac.uk/id/dataHolding/13607149
eng
geoscientificInformation
publication
2008-06-01
NGDC Deposited Data
UKCCS
Carbon capture and storage
revision
2022
NERC_DDC
2013-03
2014-08
creation
2014-08
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UKCCSRC Call 1 project, grant number: UKCCSRC-C1-26, Lead institution: Cardiff University
publication
2011
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See the referenced specification
publication
2010-12-08
false
See http://eur-lex.europa.eu/LexUriServ/LexUriServ.do?uri=OJ:L:2010:323:0011:0102:EN:PDF
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