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ISRU Challenge Production of O2 and Fuel from CO2

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ISRU Challenge Production of O2 and Fuel from CO2 ( isru-challenge-production-o2-and-fuel-from-co2 )

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56 References Chen, Y., Li, C. W., & Kanan, M. W. (2012). Aqueous CO2 reduction at very low overpotential on oxide-derived Au nanoparticles. Journal of the American Chemical Society, 134(49), 19969-19972. Crow, S., & Crow, S. (1997). The MOXCE Project-New cells for producing oxygen on Mars. In 33rd Joint Propulsion Conference and Exhibit (p. 2766). Dew, J. N., White, R. R., & Sliepcevich, C. M. (1955). Hydrogenation of carbon dioxide on nickel-kieselguhr catalyst. Industrial & Engineering Chemistry, 47(1), 140-146. Drake, B.G. (2009), Human Exploration of Mars Design Reference Architecture (DRA) 5.0, NASA Special Report, NASA SP-2009-566. Drake, B. G., Hoffman, S. J., & Beaty, D. W. (2010, March). Human exploration of Mars, design reference architecture 5.0. In Aerospace Conference, 2010 IEEE (pp. 1-24). IEEE. Farrauto, R. J., Liu, Y., Ruettinger, W., Ilinich, O., Shore, L., & Giroux, T. (2007). Precious metal catalysts supported on ceramic and metal monolithic structures for the hydrogen economy. Catalysis Reviews, 49(2), 141-196. Fogg, P. G. (Ed.). (2017). Carbon Dioxide in non-aqueous solvents at pressures less than 200 kPa (Vol. 50). Elsevier. Freeman, B., Yampolskii, Y., & Pinnau, I. (Eds.). (2006). Materials science of membranes for gas and vapor separation. John Wiley & Sons. R.H. Frisbee, J.R. French, Jr. and E.A. Lawton. (1987). A new look at oxygen production on Mars-In situ propellant production (ISPP). In 25th AIAA Aerospace Sciences Meeting (p. 236). Froehlich, J. D., & Kubiak, C. P. (2015). The homogeneous reduction of CO2 by [Ni (cyclam)]+: increased catalytic rates with the addition of a CO scavenger. Journal of the American Chemical Society, 137(10), 3565-3573. Gendron, S., Wang, G., Jiang, X. X., Nikanpour, D., Davis, J., Lange, C., & Lapensée, S. (2010). Phoenix mars lander mission: Thermal and cfd modeling of the meteorological instrument based on flight data. In 40th International Conference on Environmental Systems (p. 6195). Gennaro, A., Isse, A. A., Severin, M. G., Vianello, E., Bhugun, I., & Savé ant, J. M. (1996). Mechanism of the electrochemical reduction of carbon dioxide at inert electrodes in media of low proton availability. Journal of the Chemical Society, Faraday Transactions, 92(20), 3963-3968. Gerischer, H. (1979). Solar photoelectrolysis with semiconductor electrodes. In Solar energy conversion (pp. 115-172). Springer, Berlin, Heidelberg.

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