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osmosis desalination system. Applied Energy 2010; 87: 1303. 44 AIREC; available at: http://www.airec.se/; as accessed: 17.06.2009. 45 J. Larjola, Electricity from industrial waste heat using high‐speed organic Rankine cycle (ORC), Int. J. Production Economic 1995; 41: 227‐235. 46 1‐O. Badr, P. W. O'Callaghan, M. Hussein and S. D. Probert, Multi‐Vane Expanders as Prime Movers for Low‐Grade Energy Organic Rankine‐Cycle Engines, Applied Energy 1984; 16: 129‐146. 47G. Angelino, C. Invernizzi, E. Macchi, Organic working fluid optimization for space power cycles, in: G. Angelino, L. De Luca, W.A. Sirignano (Eds.), Modern Research Topics in Aerospace Propulsion, Springer‐Verlag, New York, 1991. 48 A.A. Lakew, O. Bolland, Working fluids for low temperature heat source, Applied Thermal Engineering (2010), doi: 10.1016/j.applthermaleng.2010.02.009: Page: 33. 49T.C. Hung, S.K. Wang, C.H. Kuo, B.S. Pei, K.F. Tsai, A study of organic working fluids on system efficiency of an ORC using low‐grade, Energy 2009; 35: 1403– 1411. 50 H. Leibowitz, I. K. Smith, N Stosic, Cost effective small scale orc systems for power recovery from low grade heat sources, ASME International Mechanical Engineering Congress and Exposition 2006; Pages 5‐ 6. 51T.C. Hung, S.K. Wang, C.H. Kuo, B.S. Pei, K.F. Tsai, A study of organic working fluids on system efficiency of an ORC using low‐grade, Energy 2009; 35: 1403– 1411. 52 Sylvain Quoilin and Vincent Lemort; available at: http://www.labothap.ulg.ac.be/cmsms/uploads/File /ECEMEI_PaperULg_SQVL090407.pdf; as accessed: 01.05.2010. 53 Pedro J. Mago, Anna Hueffed, Louay M. Chamra, Analysis and optimization of the use of CHP–ORC systems for small commercial buildings, Energy and Buildings 2010; 42: 1491 – 1498. 54Delgado‐Torres AM, García‐Rodríguez L. Analysis and optimization of the low‐temperature solar organic Rankine cycle (ORC). Energy Convers Manage (2010), doi:10.1016/j.enconman.2010.06.022 55Joan Carles Bruno, Jesu ́s Lo ́pez‐Villada, Eduardo Letelier, Silvia Romera, Alberto Coronas, Modelling and optimisation of solar organic rankine cycle engines for reverse osmosis desalination, Applied Thermal Engineering 2008; 28: 2212 – 2226. 56Bertrand Fankam Tchanche, George Papadakis, Gregory Lambrinos, Antonios Frangoudakis, Fluid selection for a low‐ temperature solar organic Rankine cycle, Applied Thermal Engineering 2009; 29: 2475. 57W. Nowak, A. Borsukiewicz‐Gozdur, A.A. Stachel, Using the low‐temperature Clausius–Rankine cycle to cool technical equipment, Applied Energy 2008; 85: 582–588. 58 Investopedia; available at: http://www.investopedia.com/terms/n/npv.asp; as accessed: 27.07.2010. 59 Investopedia; available at http://www.investopedia.com/terms/i/irr.asp; as accessed: 27.07.2010. 60Source: Alureiter; available at: http://en.wikipedia.org/wiki/File:COGAS_diagram.sv g; as accessed: 21.09.2010. 81

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