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REFERENCES: [1] M.-H. Kim, J. Pettersen, C. W. Bullard ,Fundamental process and system design issues in CO2 vapor compression systems, Progress in Energy and Combustion Science, Volume 30, Issue 2, 2004, Pages 119-174 [2] Köster, Stephan: Auslegung, Konstruktion und experimentelle Untersuchung einer Hochtemperatur-Heizungswärmepumpenanlage mit dem natürlichen Kältemittel Kohlendioxid, Fortschritt-Berichte VDI Reihe 19, VDI Verlag Düsseldorf, 2005 [3] http://www.sanyo.com.pl/co2.pdf (2008) [4] J. Stene, Residential CO2 heat pump system for combined space heating and hot water heating, International Journal of Refrigeration, Volume 28, Issue 8, December 2005, Pages 1259-1265 [5] R. Yokoyama, T. Shimizu, K. I., K. Takemura , Influence of ambient temperatures on performance of a CO2 heat pump water heating system, Energy, Volume 32, Issue 4, April 2007, Pages 388-398 [6] M. R. Richter, S. M. Song, J. M. Yin, M. H. Kim, C. W. Bullard, P. S. Hrnjak Experimental results of transcritical CO2 heat pump for residential application, Energy, Volume 28, Issue 10, August 2003, Pages 1005-1019 [7] N. Agrawal, S. Bhattacharyya, Optimized transcritical CO2 heat pumps: Performance comparison of capillary tubes against expansion valves, International Journal of Refrigeration, Volume 31, Issue 3, May 2008, Pages 388-395 42PDF Image | CO2 heat pumps for the Swedish market
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CO2 Organic Rankine Cycle Experimenter Platform The supercritical CO2 phase change system is both a heat pump and organic rankine cycle which can be used for those purposes and as a supercritical extractor for advanced subcritical and supercritical extraction technology. Uses include producing nanoparticles, precious metal CO2 extraction, lithium battery recycling, and other applications... More Info
Heat Pumps CO2 ORC Heat Pump System Platform More Info
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