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evaluation of CO2 utilisation for fuel production

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[17] E. A. Quadrelli, G. Centi, J.-L. Duplan, and S. Perathoner, “Carbon dioxide recycling: Emerging large- scale technologies with industrial potential,” ChemSusChem, vol. 4, no. 9, pp. 1194–1215, 2011. [18] M. Peters, B. Köhler, W. Kuckshinrichs, W. Leitner, P. Markewitz, and T. E. Müller, “Chemical Technologies for Exploiting and Recycling Carbon Dioxide into the Value Chain,” ChemSusChem, vol. 4, no. 9, pp. 1216–1240, 2011. [19] B. Hu, C. Guild, and S. L. Suib, “Thermal, electrochemical, and photochemical conversion of CO2 to fuels and value-added products,” J. CO2 Util., vol. 1, pp. 18–27, 2013. [20] J. Bøgild Hansen, I. Dybkjær, and C. Friis Pedersen, “SOEC enabled Methanol Synthesis,” in 10th European SOFC Forum 2012, 2012, p. A1105. [21] A. Dominguez-Ramos, B. Singh, X. Zhang, E. G. Hertwich, and A. Irabien, “Global warming footprint of the electrochemical reduction of carbon dioxide to formate,” J. Clean. Prod., vol. 104, pp. 148–155, 2015. [22] P. Markewitz, W. Kuckshinrichs, W. Leitner, J. Linssen, P. Zapp, R. Bongartz, A. Schreiber, T. E. Müller, E. Environ, P. Markewitz, W. Kuckshinrichs, W. Leitner, J. Linssen, P. Zapp, R. Bongartz, and E. M. Thomas, “Worldwide innovations in the development of carbon capture technologies and the utilization of CO2,” Energy Environ. Sci., vol. 5, pp. 7281–7305, 2012. [23] A. M. Chapman, C. Keyworth, M. R. Kember, A. J. J. Lennox, and C. K. Williams, “Adding Value to Power Station Captured CO2 : Tolerant Zn and Mg Homogeneous Catalysts for Polycarbonate Polyol Production,” 2015. [24] R. T. J. Porter, M. Fairweather, M. Pourkashanian, and R. M. Woolley, “The range and level of impurities in CO2 streams from different carbon capture sources,” Int. J. Greenh. Gas Control, vol. 36, pp. 161– 174, 2015. [25] R. Pate, G. Klise, and B. Wu, “Resource demand implications for US algae biofuels production scale-up,” Appl. Energy, vol. 88, no. 10, pp. 3377–3388, 2011. [26] T. Takeshita, “Assessing the co-benefits of CO2 mitigation on air pollutants emissions from road vehicles,” Appl. Energy, vol. 97, pp. 225–237, 2012. [27] GCCSI and PB, “Accelerating the uptake of CCS: industrial use of captured carbon dioxide,” 2011. [28] CSLF, “CO2 utilisation options - Phase 1 report,” 2012. [29] CSLF, “CO2 utilisation options - Phase 2 report,” 2012. [30] ADEME, “Chemical conversion of CO2. Quantification of energy and environmental benefits and economic evaluation of three chemical routes,” 2014. [31] IHS Chemical, “Hydrogen - Abstract from the report Chemicals Economic Handbook,” 2013. [Online]. Available: http://www.ihs.com/products/chemical/planning/ceh/hydrogen.aspx. [Accessed: 01-Aug- 2014]. [32] European Commission, “H2Aircraft - CRYOPLANE and the future of flight.” Aug-2013. [33] R. Kothari, D. Buddi, and R. Sawhney, “Comparison of environmental and economic aspects of various hydrogen production methods,” Renew. Sustain. Energy Rev., vol. 12, pp. 553–563, 2008. 68

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