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Compact, Lightweight Adsorber and Sabatier Reactor for CO2 Capture and Reduction for Consumable and Propellant Production

机译:COMPORD,轻质吸附器和CO2捕获和降低消耗品和推进剂生产的捕获反应器

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The utilization of CO2 to produce (or recycle) life support consumables, such as O2 and H2O, and to generate propellant fuels is an important aspect of NASA's concept for future, long duration planetary exploration. One potential approach is to capture and use CO2 from the Martian atmosphere to generate the consumables and propellant fuels. Precision Combustion, Inc. (PCI), with support from NASA, continues to develop its regenerable adsorber technology for capturing CO2 from gaseous atmospheres (for cabin atmosphere revitalization and in-situ resource utilization applications) and its Sabatier reactor for converting CO2 to methane and water. Both technologies are based on PCI's Microlith?substrates and have been demonstrated to reduce size, weight, and power consumption during CO2 capture and methanation process. For adsorber applications, the Microlith substrates offer a unique resistive heating capability that shows potential for short regeneration time and reduced power requirements compared to conventional systems. For the Sabatier applications, the combination of the Microlith substrates and durable catalyst coating permits efficient CO2 methanation that favors high reactant conversion, high selectivity, and durability. Results from performance testing at various operating conditions will be presented. An effort to optimize the Sabatier reactor and to develop a bench-top Sabatier Development Unit (SDU) will be discussed.
机译:CO2的利用产生(或再循环)寿命支持耗材,例如O2和H2O,并且产生推进剂燃料是NASA对未来的概念的重要方面,持续长期行星勘探。一种潜在的方法是捕获和使用来自火星氛围的二氧化碳来产生耗材和推进剂燃料。 Precision Combustion,Inc。(PCI),来自美国宇航局的支持,继续开发其可再生的吸附技术,用于从气态气氛(用于驾驶室气氛振兴和原位资源利用应用)及其用于将CO2转换为甲烷的Sabatier反应器的CO2水。这两种技术都基于PCI的微旋流器,并且已经证明了CO 2捕获和甲烷化过程中的尺寸,重量和功耗。对于吸附器应用,微透镜基板具有独特的电阻加热能力,其显示与传统系统相比,显示出短再生时间和功率要求降低的电位。对于易拟达拟应用,微锂基板和耐用催化剂涂层的组合允许有效的CO 2甲烷化,其利用高反应性转化,高选择性和耐久性。将提出各种操作条件下性能测试的结果。将讨论优化Sabatier反应堆并开发台式跨越式开发单位(SDU)的努力。

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