16.06.2013 Views

1. Introduction - Firenze University Press

1. Introduction - Firenze University Press

1. Introduction - Firenze University Press

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

and the clean utilization of coal, and will possibly provide a new path to enforce the safety of<br />

energy supply.<br />

ACKNOWLEDGEMENTS<br />

This work has been supported by Supported by the major international cooperation projects of the<br />

National Natural Science Foundation of China (Grant No. 50520140517) and supported by NFSC<br />

Projects (No. 50706052).<br />

REFERENCES<br />

[1] BP (British Petroleum), 2009. BP statistical review of world energy 2009. Available from:<br />

.<br />

[2] X.M. Ou, X.Y. Yan, X. L. Zhang, 2010. Using coal for transportation in China: Life cycle<br />

GHG of coal-based fuel and electric vehicle and policy implications, International Journal of<br />

Greenhouse Gas Control, 4(2010), pp. 878-887.<br />

[3] IEA (International Energy Agency), 2003. CO2 emissions from fuel combustion 1997-2001,<br />

IEA/OECD, Paris, France, 2003.<br />

[4] IPCC (Intergovernmental Panel on Climate Change), 200<strong>1.</strong> Climate Change 2001, 3rd<br />

assessment report of the Intergovernmental Panel on Climate Change, Cambridge <strong>University</strong><br />

<strong>Press</strong>, Cambridge, UK, 200<strong>1.</strong><br />

[5] IPCC (Intergovernmental Panel on Climate Change), 2005. Special Report on Carbon dioxide<br />

Capture and Storage, Eighth Session of IPCC Working Group III, Montreal, Canada, 2005.<br />

[6] H. G. Jin, L. Gao, W. Han, 2007. A NOVEL COAL-BASED POLYGENERATION SYSTEM<br />

OF POWER AND LIQUID FUEL WITH CO2 CAPTURE, Proceedings of GT2007 ASME<br />

TURBO EXPO 2007: Power for Land, Sea and Air May 14-17, 2007, Montreal, Canada.<br />

[7] Chiesa, P. and Consonni, S., 1999. Shift reactors and physical absorption for low-CO2 emission<br />

IGCCs, ASME Trans., Journal of Engineering for gas turbines and power, 121, pp. 295-305.<br />

[8] Lozza, G. and Chiesa, P., 2002. Natural gas decarbonization to reduce CO2 emission from<br />

combined cycles-part I: partial oxidation, ASME Trans., Journal of Engineering for gas<br />

turbines and power, 124, pp. 82-88.<br />

[9] Lozza, G. and Chiesa, P., 2002. Natural gas decarbonization to reduce CO2 emission from<br />

combined cycles-part II: steam-methane reforming, ASME Trans., Journal of Engineering for<br />

gas turbines and power, 124, pp. 89-95.<br />

[10] Chiesa, P. and Lozza, G., 1998. CO2 Emission Abatement in IGCC Power Plants by Semiclosed<br />

Cycles, Part A: With Oxygen-blown Combustion. ASME98-GT-384.<br />

[11] Y. Inui, T. Matsumae, H. Koga, K. Nishiura, 2005. High performance SOFC/GT combined<br />

power generation system with CO2 recovery by oxygen combustion method. Energy<br />

Conversion and Management 46 (2005), pp. 1837-1847.<br />

[12] Q. Yang, Jerry Y.S. Lin, 2006. Fixed-bed performance for production of oxygen-enriched<br />

carbon dioxide stream by perovskite-type ceramic sorbent., Separation and Purification<br />

Technology 49 (2006), pp.27–35.<br />

[13] Roda Bounaceur, Nancy Lape, Denis Roizard, Cecile Vallieres, Eric Favre, 2006. Membrane<br />

processes for post-combustion carbon dioxide capture: A parametric study, Energy 31 (2006),<br />

pp. 2556–2570.<br />

[14] Luis M. Romeo, Irene Bolea, Jesus M. Escosa, 2008. Integration of power plant and amine<br />

scrubbing to reduce CO2 capture costs, Applied Thermal Engineering 28 (2008), pp. 1039–<br />

1046.<br />

[15] H.G. Jin, S.E. Sun, W. Han, L. Gao, 2007. A Novel Multi-functional Energy System for Coproducing<br />

Coke, Hydrogen and Power, Proceedings of the ASME 2007 International Design<br />

16

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!