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Performance Characterization of a Prototype Ultra-Short Channel Monolith Catalytic Reactor for Air Quality Control Applications

机译:用于空气质量控制应用的原型超短通道整体催化反应器的性能表征

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Contaminated air and process gases, whether in a crewed spacecraft cabin atmosphere, the working volume of a microgravity science or ground-based laboratory experiment facility, or the exhaust from an automobile, are pervasive problems that ultimately effect human health, performance, and well-being. The need for highly effective, economical decontamination processes spans a wide range of terrestrial and space flight applications. Adsorption processes are used widely for process gas decontamination. Most industrial packed bed adsorption processes use activated carbon because it is cheap and highly effective. Once saturated, however, the adsorbent is a concentrated source of contaminants. Industrial applications either dump or regenerate the activated carbon. Regeneration may be accomplished in-situ or at an off-site location. In either case, concentrated contaminated waste streams must be handled appropriately to minimize environmental impact. As economic and regulatory forces drive toward minimizing waste and environmental impact, thermal catalytic oxidation is becoming more attractive. Through novel reactor and catalyst design, more complete contaminant destruction and greater resistance to poisoning can achieved leading to less waste handling, process downtime, and maintenance. Performance of a prototype thermal catalytic reactor, based on ultra-short channel monolith (USCM) catalyst substrate design, under a variety of process flow and contaminant loading conditions is discussed. The experimental results are evaluated against present and future air quality control and process gas purification processes used on board crewed spacecraft.
机译:受污染空气和工艺气体,无论是在载人航天器座舱氛围,微重力科学或陆基实验室的实验设施,或者从汽车排气的工作容积,普遍存在的问题,最终影响人类健康,性能和良好存在。需要高度有效的,经济的去污过程跨越宽范围的地面和空间飞行应用。吸附过程广泛用于工艺气体去污。大多数工业包装床吸附过程使用活性炭,因为它很便宜,非常有效。然而,一旦饱和,吸附剂是浓缩污染物源。工业应用倾卸或再生活性炭。再生可以在原位或在场外位置完成。在任何一种情况下,必须适当地处理浓缩的污染废物流以最大限度地减少环境影响。随着经济和监管部队推动最小化浪费和环境影响,热催化氧化变得越来越有吸引力。通过新颖的反应器和催化剂设计,更完全的污染物破坏和更大的抗中毒抗性导致较少的废物处理,过程停机和维护。讨论了基于超短通道整体(USCM)催化剂底物设计的原型热催化反应器的性能,并讨论了各种过程流程和污染物负载条件下。在船上使用的航天器中使用的本发明和未来的空气质量控制和工艺气体净化过程评估了实验结果。

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