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Amine Based CO2 Capture

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Amine Based CO2 Capture ( amine-based-co2-capture )

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4. IEA GHGRDP (2000). “Leading options for the capture of CO2 emissions at power stations”, Report No. PH3/14, prepared by Stork Engg Consultancy B.V., Amsterdam, February 2000. 5. TransAlta Corp., Calgary, Alberta (1999). “A design study of the application of CO2/O2 combustion technology as retrofit to an existing coal fired boiler”, a report prepared by ABB Power Plant Laboratories, July 1999. 6. Simbeck, D (1999). “A portfolio selection approach for power plant CO2 capture, separation and R&D options”, in Greenhouse Gas Control Technologies (ed. by Eliasson B., Riemer P. and A. Wokaun), Proceedings of the 4th International Conference on Greenhouse Gas Control Technologies, 30 August – 2 September 1998, Interlaken, Switzerland, Elsevier Science Ltd., 119-124. 7. Bolland, O. and H. Undrum (1999). “Removal of CO2 from gas turbine power plants: Evaluation of pre- and postcombustion methods”, in Greenhouse Gas Control Technologies (ed. by Eliasson B., Riemer P. and A. Wokaun), Proceedings of the 4th International Conference on Greenhouse Gas Control Technologies, 30 August – 2 September 1998, Interlaken, Switzerland, Elsevier Science Ltd., 125-130. 8. Chapel, D., Ernst, J. and C. Mariz (1999). “Recovery of CO2 from flue gases: commercial trends (paper No. 340)”, presented at the Canadian Society of Chemical Engineers annual meeting, Saskatoon, Saskatchewan, Canada, October 4-6, 1999. 9. Appl, M. (1999). Ammonia: Principles and Industrial Practice, Chapter 4, Wiley-VCH, Weinheim, FRG. 10. Desideri, U. and A. Paolucci (1999). “Performance modelling of a carbon dioxide removal system for power plants”, Energy Conversion and Management, 40, 1899-1915. 11. Tontiwachwuthikul, P., Chan, C.W., Kritpiphat, W., Demontigny, D., Skoropad, D., Gelowitz, D., Aroonwilas, A., Mouritas, F., Wilson, M., and L. Ward (1998). “Large scale carbon dioxide production from coal-fired power stations for enhanced oil recovery: A new economic feasibility study”, The J. of Can. Petro. Tech., 37(11), 48-55. 12. Desideri U. and R. Corbelli (1998). “CO2 capture in small size cogeneration plants: Technical and economical considerations”, Energy Conversion and Management, 39(9), 857-867. 13. Bolland, O. and P. Mathieu (1998). “Comparison of two CO2 removal options in combined cycle power plants”, Energy Conversion and Management, 39(16-18), 1653-1663. 14. Kohl, A.L. and R.B. Nielsen (1997). Gas Purification, 40-277, 5th ed., Gulf Publishing Company, Houston, TX. 15. Mimura, T., Simayoshi, H., Suda, T., Iijima, M., and Mituoka, S. (1997). “Development of energy saving technology for flue gas carbon dioxide recovery in power plants by chemical absorption method and steam system”, Energy Conversion and Management, 38(Suppl.), S57-S62. 16. Leci, C.L. (1996). “Development requirements for absorption processes for effective CO2 capture from power plants”, Energy Conversion and Management, 38(Suppl.), S45-S50. 17. Tontiwachwuthikul, P.T., Kritpiphat, W., and D. Gelowitz (1996). “Carbon dioxide production from co-generation for enhanced oil recovery: An economic evaluation”, The J. of Can. Petro. Tech., 35(6), 27-33. 18. Leci, C.L. (1996). “Financial implications on power generation costs resulting from the parasitic effect of CO2 capture using liquid scrubbing technology form power station flue gases”, Energy Conversion and Management, 37(6-8), 915-921. 19. Rao, A.D., and W.H. Day (1996). “Mitigation of greenhouse gases from gas turbine power plants”, Energy Conversion and Management, 37(6-8), 909-914. Integrated Environmental Control Model - Technical Documentation • 58

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