sustainable production of fuels and chemicals

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2S. Abell ́o and D. Montan ́e, “Exploring Iron-based Multifunctional Catalysts for Fischer–Tropsch Synthesis: A Review”, ChemSusChem, 4, 1538–1556 (2011). 3A. A ́lvarez, A. Bansode, A. Urakawa, A. V. Bavykina, T. A. Wezendonk, M. Makkee, J. Gascon, and F. Kapteijn, “Challenges in the greener production of formates/formic acid, methanol, and DME by hetero- geneously catalyzed CO2 hydrogenation processes”, Chemical Reviews, 117, 9804–9838 (2017). 4M. P ́erez-Fortes, J. C. Sch ̈oneberger, A. Boulamanti, and E. Tzimas, “Methanol synthesis using captured CO2 as raw material: Techno-economic and environmental assessment”, Applied Energy, 161, 718–732 (2016). 5J. Sun, G. Yang, Y. Yoneyama, and N. Tsubaki, “Catalysis chemistry of dimethyl ether synthesis”, ACS Catalysis, 4, 3346–3356 (2014). 6I. Yarulina, A. D. Chowdhury, F. Meirer, B. M. Weckhuysen, and J. Gascon, “Recent trends and funda- mental insights in the methanol-to-hydrocarbons process”, Nature Catalysis, 1, 398 (2018). 7R. Sun, A. Kann, H. Hartmann, A. Besmehn, P. J. Hausoul, and R. Palkovits, “Direct Synthesis of Methyl Formate from CO2 With Phosphine-Based Polymer-Bound Ru Catalysts”, ChemSusChem, 12, 3278 (2019). 8M. Ao, G. H. Pham, J. Sunarso, M. O. Tade, and S. Liu, “Active centers of catalysts for higher alcohol synthesis from syngas: a review”, ACS Catalysis, 8, 7025–7050 (2018). 9Technical background on the LanzaTech Process, http://www.arpae-summit.com/paperclip/exhibitor_ docs/14AE/LanzaTech_Inc._131.pdf, Accessed: 2019-07-03. 10C. Dillerop, H. Van Den Berg, and A. G. van der Ham, “Novel syngas production techniques for GTL-FT synthesis of gasoline using reverse flow catalytic membrane reactors”, Industrial & Engineering Chemistry Research, 49, 12529–12537 (2010). 11G. Busca, Heterogeneous Catalytic Materials: Solid State Chemistry, Surface Chemistry and Catalytic Behaviour (Elsevier, 2014). 12K. De Wispelaere, S. Bailleul, and V. Van Speybroeck, “Towards molecular control of elementary reactions in zeolite catalysis by advanced molecular simulations mimicking operating conditions”, Catalysis Science & Technology, 6, 2686–2705 (2016). 48

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