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The Concept and Analytical Investigation of CO2 and Steam Co-Electrolysis for Resource Utilization in Space Exploration

机译:太空勘探资源利用的二氧化碳与蒸汽协同电解的概念及分析研究

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CO2 acquisition and utilization technologies will have a vital role in designing sustainable and affordable life support and in situ fuel production architectures for human and robotic exploration of the Moon and Mars. For long-term human exploration to be practical, reliable technologies have to be implemented to capture the metabolic CO2 from the cabin air and chemically reduce it to recover oxygen. Technologies that enable the in situ capture and conversion of atmospheric CO2 to fuel are essential for a viable human mission to Mars. This paper describes the concept and mathematical analysis of a closed-loop life support system based on combined electrolysis of CO2 and steam (co-electrolysis). Products of the co-electrolysis process include oxygen and syngas (CO and H2) that are suitable for life support and synthetic fuel production, respectively. The model was developed based on the performance of a co-electrolysis system developed at Idaho National Laboratory (INL). Individual and combined process models of the co-electrolysis and Sabatier, Bosch, Boudouard, and hydrogenation reactions are discussed and their performance analyses in terms of oxygen production and CO2 utilization are presented.
机译:二氧化碳收购和利用技术将在设计可持续和经济实惠的生命支持方面具有至关重要的作用,以便对月球和火星的人类和机器人探索的原位燃料生产架构。对于长期人类勘探,必须实施可靠的技术,必须实施以从机舱空气中捕获代谢二氧化碳,并在化学上减少它以回收氧气。能够以原位捕获和转换为燃料的技术,对火星可行的人类使命是必不可少的。本文介绍了基于CO2和蒸汽(共电解)组合电解的闭环寿命支持系统的概念和数学分析。共电解过程的产品包括氧气和合成气(CO和H2),它们分别适用于寿命支持和合成燃料生产。该模型是基于在爱达荷国家实验室(INL)开发的共同电解系统的性能的开发。讨论了共同电解和萨比尔,博世,鲍瓦特和氢化反应的个体和组合过程模型,并提出了它们在氧气生产和二氧化碳利用方面的性能分析。

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