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Compact and Lightweight Sabatier Reactor for Carbon Dioxide Reduction

机译:紧凑轻巧的Sabatier反应器,用于减少二氧化碳

摘要

The utilization of CO2 to produce life support consumables, such as O2 and H2O, via the Sabatier reaction is an important aspect of NASA s cabin Atmosphere Revitalization System and In-Situ Resource Utilization architectures for both low-earth orbit and long-term manned space missions. In the current International Space Station (ISS) and other low orbit missions, metabolically-generated CO2 is removed from the cabin air and vented into space, resulting in a net loss of O2. This requires a continuous resupply of O2 via water electrolysis, and thus highlights the need for large water storage capacity. For long-duration space missions, the amount of life support consumables is limited and resupply options are practically nonexistent, thus atmosphere resource management and recycle becomes crucial to significantly reduce necessary O2 and H2O storage. Additionally, the potential use of the Martian CO2-rich atmosphere and Lunar regolith to generate life support consumables and propellant fuels is of interest to NASA. Precision Combustion, Inc. (PCI) has developed a compact, lightweight Microlith(Registered TradeMark)-based Sabatier (CO2 methanation) reactor which demonstrates the capability of achieving high CO2 conversion and near 100% CH4 selectivity at space velocities of 30,000-60,000 hr-1. The combination of the Microlith(Registered TradeMark) substrates and durable, novel catalyst coating permitted efficient Sabatier reactor operation that favors high reactant conversion, high selectivity, and long-term durability. This paper presents the reactor development and performance results at various operating conditions. Additionally, results from 100-hr durability tests and mechanical vibration tests are discussed.
机译:通过Sabatier反应利用CO2产生生命支持性消耗品,例如O2和H2O,这是NASA机舱大气再生系统和用于低地球轨道和长期有人驾驶空间的现场资源利用架构的重要方面任务。在当前的国际空间站(ISS)和其他低轨道飞行任务中,代谢产生的二氧化碳从机舱空气中清除并排入太空,导致O2净损失。这需要通过水电解连续补充氧气,因此突出显示了对大储水量的需求。对于长时间的太空任务,生命支持消耗品的数量是有限的,补给选择几乎不存在,因此大气资源管理和回收对于大幅减少必要的O2和H2O储存至关重要。此外,美国国家航空航天局(NASA)感兴趣地利用富含火星的CO2大气层和月球重熔岩来生成生命维持消耗品和推进剂燃料。 Precision Combustion,Inc.(PCI)已开发出一种紧凑,轻便的基于Microlith(注册商标)的Sabatier(CO2甲烷化)反应器,该反应器具有在30,000-60,000 hr的空速下实现高CO2转化率和接近100%CH4选择性的能力。 -1。 Microlith(注册商标)基材与耐用的新型催化剂涂层的结合使Sabatier反应器得以高效运行,从而有利于高反应物转化率,高选择性和长期耐用性。本文介绍了在各种运行条件下反应堆的开发和性能结果。此外,还讨论了100小时耐久性测试和机械振动测试的结果。

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