Page 91 - New Trends In Coal Conversion
P. 91
56 New Trends in Coal Conversion
Elliott, J., Yi, F., 2017. Sorbent based post-combustion CO 2 slipstream testing. In: 2017 NETL
CO 2 Capture Technology Project Review Meeting, Pittsburgh, USA.
ETI, 2016. Reducing the cost of CCS developments in capture plant technology. Energy
Technologies Institute.
Fitzsimmons, M., 2017. Enabling technologies for oxy-fired pressurized fluidized bed
combustor development. In: 2017 NETL CO 2 Capture Technology Project Review
Meeting, Pittsburgh, USA.
Follett, W., 2016. Oxy-combustion pressurized fluidized bed with carbon dioxide purification.
In: 2016 NETL CO 2 Capture Technology Meeting, Pittsburgh, USA.
Fradette, L., Lefebvre, S., Carley, J., 2017. Demonstration results of enzyme-accelerated CO 2
capture. Energy Procedia 114, 1100e1109.
GCCSI, 2014. The global status of CCS 2014. Global Carbon Capture and Storage Institute Ltd.
GCCSI, 2015. CCS: A China perspective. Yanchang Petroleum report 1: capturing CO 2 from
coal to chemical process. Global Carbon Capture and Storage Institute Ltd.
GCCSI, 2017. The global status of CCS: 2017. Global Carbon capture and Storage Institute Ltd.
Ghezel-Ayagh, H., 2017. Pilot test of novel electrochemical membrane system for carbon
dioxide capture and power generation DE-FE0026580. In: 2017 NETL CO 2 Capture
Technology Project Review Meeting, Pittsburgh, USA.
Greason, D., 2017. Petra Nova carbon capture. In: The future of Carbon Capture, Utilization, and
Storage (CCUS): status, issues, needs, Washington, USA.
H€ agg, M.-B., He, X., Huibers, M., 2015. Results and future perspective of membrane consor-
tium’s membrane project. In: Norcem CCS Conference, Langesund, Norway.
Hofmann, T., Kniep, J., Merkel, T., Nguyen, V., Prakash, A., Wang, H., Watson, B.,
Westling, E., Farzan, H., Fennell, J., Mackrory, A., Mohr, L., Seshadri, P., Sivy, J., 2017.
Integrated testing of a membrane CO 2 capture process with a coal-fired boiler DE-
FE0026414. In: 2017 NETL CO 2 Capture Technology Review Meeting, Pittsburgh, USA.
Hsu, H.-W., 2014. Research and demonstration for carbon capture and storage technology.
National Energy Program (NEP).
IEA, 2016. 20 Years of carbon capture and storage. Accelerating future deployment. Interna-
tional Energy Agency, Paris, France.
IEAGHG, 2013. Deployment of CCS in the cement industry. IEA Environmental Projects Ltd.,
Cheltenham, UK.
IEAGHG, 2015. Integrated carbon capture and storage project at Saskpower’s Boundary Dam
power station. IEA Environmental Projects Ltd.
IPCC, 2005. IPCC special report on carbon dioxide capture and storage. IPCC, Cambridge,
United Kingdom and New York, USA, p. 442.
Ishibashi, M., Ota, H., Akutsu, N., Umeda, S., Tajika, M., Izumi, J., Yasutake, A., Kabata, T.,
Kageyama, Y., 1996. Technology for removing carbon dioxide from power plant flue gas
by the physical adsorption method. Energy Conversion and Management 37 (6e8),
929e933.
Jansen, D., van Selow, E., Cobden, P., Manzolini, G., Macchi, E., Gazzani, M., Blom, R.,
Henriksen, P.P., Beavis, R., Wright, A., 2013. SEWGS technology is now ready for scale-
up! Energy Procedia 37, 2265e2273.
Jo, S.-H., Park, Y.C., Moon, J.-H., Lee, S., Han, S.P., Yi, C.-K., 2017. Heat integration of
KIERDRY process with a power plant using gPROMS. Energy Procedia 114, 6660e6665.
Jordal, K., Voldsund, M., Størset, S., Fleiger, K., Ruppert, J., Sp€ orl, R., Hornberger, M.,
Cinti, G., 2017. CEMCAP e making CO 2 capture retrofittable to cement plants. Energy
Procedia 114, 6175e6180.