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Sabatier Reactor System Integration with Microwave Plasma Methane Pyrolysis Post-Processor for Closed-Loop Hydrogen Recovery

机译:Sabatier反应器系统与微波等离子体甲烷热解后处理器的集成,用于闭环氢气回收

摘要

The Carbon Dioxide Reduction Assembly (CRA) designed and developed for the International Space Station (ISS) represents the state-of-the-art in carbon dioxide reduction (CDRe) technology. The CRA produces water and methane by reducing carbon dioxide with hydrogen via the Sabatier reaction. The water is recycled to the Oxygen Generation Assembly (OGA) and the methane is vented overboard resulting in a net loss of hydrogen. The proximity to earth and the relative ease of logistics resupply from earth allow for a semi-closed system on ISS. However, long-term manned space flight beyond low earth orbit (LEO) dictates a more thoroughly closed-loop system involving significantly higher recovery of hydrogen, and subsequent recovery of oxygen, to minimize costs associated with logistics resupply beyond LEO. The open-loop ISS system for CDRe can be made closed-loop for follow-on missions by further processing methane to recover hydrogen. For this purpose, a process technology has been developed that employs a microwave-generated plasma to reduce methane to hydrogen and acetylene resulting in 75% theoretical recovery of hydrogen. In 2009, a 1-man equivalent Plasma Pyrolysis Assembly (PPA) was delivered to the National Aeronautics and Space Administration (NASA) for technical evaluation. The PPA has been integrated with a Sabatier Development Unit (SDU). The integrated process configuration incorporates a sorbent bed to eliminate residual carbon dioxide and water vapor in the Sabatier methane product stream before it enters the PPA. This paper provides detailed information on the stand-alone and integrated performance of both the PPA and SDU. Additionally, the integrated test stand design and anticipated future work are discussed.
机译:为国际空间站(ISS)设计和开发的二氧化碳减排组件(CRA)代表了二氧化碳减排(CDRe)技术的最先进水平。 CRA通过Sabatier反应通过用氢气还原二氧化碳来生产水和甲烷。水被循环到氧气产生装置(OGA),甲烷从船外排出,导致氢气净损失。靠近地球并相对容易从地球补给物流,因此可以在ISS上使用半封闭系统。但是,长期载人航天飞行超过低地球轨道(LEO)要求更彻底的闭环系统,该系统涉及更高的氢气回收率和随后的氧气回收率,以最大程度地减少与LEO以外的物流补给相关的成本。通过进一步处理甲烷以回收氢气,可将CDRe的开环ISS系统闭环用于后续任务。为此目的,已经开发出一种处理技术,该技术利用微波产生的等离子体将甲烷还原为氢和乙炔,从而使氢的理论回收率为75%。在2009年,一个相当于1人的等离子热解组件(PPA)被交付给国家航空航天局(NASA)进行技术评估。 PPA已与Sabatier开发部门(SDU)集成在一起。集成的工艺配置结合了吸附剂床,可在Sabatier甲烷产品流进入PPA之前消除残留的二氧化碳和水蒸气。本文提供了有关PPA和SDU的独立和集成性能的详细信息。此外,还讨论了集成测试台的设计和预期的未来工作。

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