Waste Heat to Power WH2P Applications using SCO2

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Waste Heat to Power WH2P Applications using SCO2 ( waste-heat-power-wh2p-applications-using-sco2 )

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Conclusions Supercritical CO2 heat engines are scalable across a broad system size range − from 250kWe to 45MWe and above, with net electrical output to support the widest possible variety of industrial and utility-scale applications. The sCO2 Cycle is thermal source agnostic − suitable with a wide range of heat sources from 400°F to 1000+°F with efficiencies up to 30 percent depending on the heat source. New energy production can be offset with recovered energy without increasing associated greenhouse emissions while improving overall energy production efficiency. The sCO2 heat engine can add up to 35% more power to simple cycle gas turbines, 10% to 15% more power to reciprocating engines, and can significantly improve the energy efficiency and bottom line performance at steel mills, cement kilns, glass furnaces and other fuel-fired industrial processes by converting previously wasted exhaust & flue gas energy into usable electricity. References 1) Robb, Drew, “Special Report – Supercritical CO2 – The Next Big Step?,” Turbomachinery International, Vol. 53, No. 5, pp. 22-28; September/October 2012. 2) Held, T., Persichilli, M., Kacludis, A., and Zdankiewicz, E., “Supercritical CO2 Power Cycle Developments and Commercialization: Why sCO2 can Displace Steam,” presented at Power- Gen India & Central Asia 2012, Pragati Maidan, New Delhi, India; 19-21 April, 2012. 3) Persichilli, M., Held, T., Hostler, S., and Zdankiewicz, E., “Transforming Waste Heat to Power through Development of a CO2-Based-Power Cycle,” presented at 16th International Symposium for Compressor Users and Manufacturers, St. Petersburg, Russia; 08-10 June, 2011. 4) Persichilli, M., Held, T., Hostler, S., Zdankiewicz, E., and Klapp, D., “Transforming Waste Heat to Power through Development of a CO2-Based-Power Cycle,” presented at Electric Power Expo 2011, Rosemount, IL U.S.A; 10-12 May, 2011. 5) Wright, S., “Mighty Mite - A Turbine That Uses Supercritical Carbon Dioxide Can Deliver Great Power from a Small Package,” Mechanical Engineering, Jan. 2012; pp. 40-43. 6) Anon., “The Industrial Gas Turbine Global Maintenance Market,” Forecast International, Dec. 2009. 7) Anon.,“Technology Characterization: Reciprocating Engines.” Prepared by Energy and Environmental Analysis Inc. for the U.S. Environmental Protection Agency Combined Heat and Power Partnership; December 2008. 8) Reed, Richard, “North American Combustion Handbook,” Third Edition; North American Mfg. Co., pp. 45-79; 2001. 9) U.S. Energy Information Administration (EIA), International Energy Outlook 2011. 9

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