1. T. Szakiert, J. Zuwada, and J. Lasek, “Oxy-fuel combustion: The state of the art,” in Proc. of the 12th Int. Conf. on Fluidized Bed Technology, Kraków, May 23–26,2017 (Fundacja dla Akademii Górniczo-Hutniczej im. Stanisława Staszica, Kraków, 2017), pp. 35–46.
2. G. A. Ryabov, O. M. Folomeev, D. A. Sankin, K. V. Khaneev, I. G. Bondarenko, and D. A. Mel’nikov, “The use of circulating fluidized bed technology for large power generating units and CO2 capture,” Elektr. Stn., No. 2, 2–11 (2010).
3. J. L. Marion, C. R. Bozzuto, N. Y. Nsakala, G. N. Liljedahl, H. E. Andrus, and R. P. Chamberland, Greenhouse Gas Emissions Control by Oxygen Firing in Circulating Fluidized Bed Boilers: Phase 1 — A Preliminary Systems Evaluation (US Department of Energy, Alstom Power Inc. and National Energy Technology Laboratory, 2003). http://www.netl.doe.gov/coal/Carbon%20Sequestration/pubs/analysis/41146_R01_Volume%20I.
4. A. Hotta, K. Nuortimo, T. Eriksson, J. Palonen, and S. Kokki, “CFB technology provides solutions to combat climate change, Foster Wheeler Energia Oy,” in Proc. of the 9th Int. Conf. on Circulating Fluidized Bed, Plenary lecture, Finland, 2008 (2008), pp. 11–17.
5. M. A. Nemitallah, M. A. Habib, H. M. Badr, and S. M. Said, “Oxy-fuel combustion technology: Current status, applications, and trends,” ER Int. J. Energy Res. 41, 1670–1708 (2017).