Numerical study of oxy-fuel combustion behaviors in a 2MWe CFB boiler

Using modified IEA-CFBC(International Energy Association-Circulating fluidized bed combustion) model, a 2 MWe oxy-fuel CFBC boiler is simulated and analyzed as a promising solution to reduce greenhouse gas emission from coal power plants. This study evaluated and compared the oxy-combustion characte...

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Veröffentlicht in:The Korean journal of chemical engineering 2020, 37(11), 248, pp.1878-1887
Hauptverfasser: Gwak, You Ra, Yun, Jin Han, Keel, Sang In, Lee, See Hoon
Format: Artikel
Sprache:eng
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Zusammenfassung:Using modified IEA-CFBC(International Energy Association-Circulating fluidized bed combustion) model, a 2 MWe oxy-fuel CFBC boiler is simulated and analyzed as a promising solution to reduce greenhouse gas emission from coal power plants. This study evaluated and compared the oxy-combustion characteristics of various coals. Also, the effects of CO 2 concentration (71–79 vol%), bed temperature (850°C) and coal properties on combustion efficiencies, CO 2 concentration, acid gas emissions were analyzed. Because of their higher N 2 and S content, sub-bituminous and bituminous coals were found to have SO x and NO x concentrations higher than those of anthracite. These simulation results from Oxy-fuel CFBC simulation of various coals can be used as operating parameters for design and development of commercial Oxy-fuel CFBC boilers.
ISSN:0256-1115
1975-7220
DOI:10.1007/s11814-020-0611-5