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Rapid Cycle Amine (RCA 2.0) System Development

机译:快速循环胺(RCA 2.0)系统开发

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The Rapid Cycle Amine (RCA) system is a low-power assembly capable of simultaneously removing carbon dioxide (CO_2) and humidity from an influent air steam and subsequent regeneration when exposed to a vacuum source. Two solid amine sorbent beds are alternated between an uptake mode and a regeneration mode. During the uptake mode, the sorbent is exposed to an air steam (ventilation loop) to adsorb CO_2 and water (H_2O) vapor, whereas during the regeneration mode, the sorbent rejects the adsorbed CO_2 and H_2O vapor to a vacuum source. The two beds operate such that while one bed is in the uptake mode, the other is in the regeneration mode, thus continuously providing an on-service sorbent bed by which CO_2 and humidity may be removed. A novel valve assembly provides a simple means of diverting the process air flow through the uptake bed while simultaneously directing the vacuum source to the regeneration bed. Additionally, the valve assembly is designed to allow for switching between uptake and regeneration modes with only one moving part while minimizing gas volume losses to the vacuum source by means of an internal pressure equalization step during actuation. The process can be controlled by a compact, low-power controller design with several modes of operation available to the user. Together with NASA Johnson Space Center, Hamilton Sundstrand Space Systems International, A UTC Aerospace Company, has been developing RCA 2.0 based on performance and design feedback on several sorbent bed test articles and valve design concepts. A final design of RCA 2.0 was selected in November 2011 and fabricated and assembled between March and August 2012, with delivery to NASA Johnson Space Center in September 2012. This paper provides an overview of the RCA system design and results of pre-delivery testing.
机译:快速循环胺(RCA)系统是一种低功率组件,能够同时从流入的空气蒸汽中除去二氧化碳(CO_2)和湿气,并在暴露于真空源时随后进行再生。两个固体胺吸附剂床在吸收模式和再生模式之间交替。在吸收模式期间,吸附剂暴露于空气蒸汽(通风回路)以吸附CO_2和水(H_2O)蒸气,而在再生模式期间,吸附剂将吸附的CO_2和H_2O蒸气排至真空源。两张床的运行方式使得当一张床处于吸收模式时,另一张床处于再生模式,从而连续提供了使用中的吸附剂床,通过该吸附剂床可以去除CO_2和湿气。一种新颖的阀组件提供了一种简单的方法,以使过程空气流通过上层床,同时将真空源引导至再生床。另外,该阀组件设计成仅通过一个运动部件就可以在吸收模式和再生模式之间进行切换,同时通过致动过程中的内部压力平衡步骤将流向真空源的气体体积损失降至最低。可以通过紧凑的低功耗控制器设计来控制该过程,并为用户提供几种操作模式。 UTC航空航天公司的Hamilton Sundstrand太空系统国际公司与美国宇航局约翰逊航天中心一起,一直在基于对几种吸附剂床测试物品和阀门设计概念的性能和设计反馈来开发RCA 2.0。 RCA 2.0的最终设计于2011年11月选定,并于2012年3月至2012年8月组装和组装,并于2012年9月交付给NASA约翰逊航天中心。本文概述了RCA系统的设计和交付前的测试结果。

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