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Advanced Plasma Pyrolysis Assembly (PPA) Reactor and Process Development

机译:先进的等离子体热解组件(PPA)反应器和工艺开发

摘要

Design and development of a second generation Plasma Pyrolysis Assembly (PPA) reactor is currently underway as part of NASA's Atmosphere Revitalization Resource Recovery effort. By recovering up to 75% of the hydrogen currently lost as methane in the Sabatier reactor effluent, the PPA helps to minimize life support resupply costs for extended duration missions. To date, second generation PPA development has demonstrated significant technology advancements over the first generation device by doubling the methane processing rate while, at the same time, more than halving the required power. One development area of particular interest to NASA system engineers is fouling of the PPA reactor with carbonaceous products. As a mitigation plan, NASA MSFC has explored the feasibility of using an oxidative plasma based upon metabolic CO2 to regenerate the reactor window and gas inlet ports. The results and implications of this testing are addressed along with the advanced PPA reactor development.
机译:作为NASA大气振兴资源回收工作的一部分,第二代等离子体热解组件(PPA)反应器的设计和开发目前正在进行中。通过回收目前在Sabatier反应堆废水中作为甲烷损失的氢气,最多可回收75%,PPA有助于最大程度地减少长期任务的生命维持补给成本。迄今为止,第二代PPA的开发通过将甲烷处理速率提高一倍,同时又将所需功率减半而展示出比第一代设备显着的技术进步。 NASA系统工程师特别感兴趣的一个开发领域是用碳质产物污染PPA反应堆。作为缓解计划,NASA MSFC探索了使用基于代谢CO2的氧化等离子体再生反应堆窗口和进气口的可行性。随着先进的PPA反应堆的开发,该测试的结果和含义也得到了解决。

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