Stanger, R., & Wall, T. (2011). Sulphur impacts during pulverised coal combustion in oxy-fuel
technology for carbon capture and storage. Progress in Energy and Combustion Science, 37,
69–88.
Stanger, R., et al. (2015). Oxyfuel combustion for CO 2 capture in power plants. International
Journal of Greenhouse Gas Control, 40, 55–125.
Sun, S.-M., et al. (2012). Volatile compounds of the green alga, Capsosiphon fulvescens. Journal
of Applied Phycology, 24, 1003–1013.
Tao, Q., et al. (2017). Enhanced biomass/biofuel production and nutrient removal in an algal
biofilm airlift photobioreactor. Algal Research, 21, 9–15.
Toftegaard, M. B., et al. (2010). Oxy-fuel combustion of solid fuels. Progress in Energy and
Combustion Science, 36, 581–625.
Vasumathi, K. K., et al. (2012). Parameters influencing the design of photobioreactor for the
growth of microalgae. Renewable and Sustainable Energy Reviews, 16, 5443–5450.
Wall, T., et al. (2009). An overview on oxyfuel coal combustion—state of the art research and
technology development. Chemical Engineering Research and Design, 87, 1003–1016.
Wang, B., et al. (2012). Closed photobioreactors for production of microalgal biomasses.
Biotechnology Advances, 30, 904–912.
Williams, P. J. B., & Laurens, L. M. L. (2010). Microalgae as biodiesel & biomass feedstocks:
Review and analysis of the biochemistry, energetics & economics. Energy & Environmental
Science, 3, 554–590.
Yin, C., & Yan, J. (2016). Oxy-fuel combustion of pulverized fuels: Combustion fundamentals
and modeling. Applied Energy, 162, 742–762.
Zepka, L. Q., et al. (2015). Biogeneration of volatile compounds from microalgae. Chapter:
Flavour Generation, 257–260.
290
I. Aguiar Severo et al.
Précédent

- 297/313

Suivant