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5 Electrochemical Studies of Non-Aqueous-based CO2 Reduction . . . 27 5.1 Fundamental Electrochemistry ..................................... 27 5.2 Experimental Approach ........................................... 28 5.3 Process A: Reductive Dimerization of CO2 to CO and CO32- ............ 29 5.4 Process B: Oxidation of CO32- to O2 and CO2 ....................... 31 5.5 Significance of Results ............................................ 32 6 System-Level Considerations .................................... 33 6.1 Oxygen Calculations: Needs and Production ......................... 33 6.2 Deployable Structures ............................................ 35 6.3 Thermal Management ............................................ 40 6.3.1 StorageTank ..................................................... 42 6.4 Power Beaming-Assisted CO2 Reduction ............................. 43 6.5 The Sabatier Reactor: Overview and Optimization Considerations . . . . . . . 46 6.5.1 SabatierReactorOverview ............................................ 46 6.5.2 SabatierReactorDesignConsiderations ................................... 47 6.5.3 Sabatier Reactor System Design Considerations, Including Thermal Management . . . . . . 49 6.5.4 CommodityAcquisitionfortheSabatierReactor ............................. 50 6.6 Feedstock Collection ............................................. 51 6.7 Roll-Up of System Engineering Considerations ........................ 52 7 Recommendations for Future Work.............................. 54 References .................................................... 55PDF Image | ISRU Challenge Production of O2 and Fuel from CO2
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