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Evaluation of Sorbents for Acetylene Separation in Atmosphere Revitalization Loop Closure

机译:大气振兴回路封闭中乙炔分离用吸附剂的评价

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摘要

State-of-the-art carbon dioxide reduction technology uses a Sabatier reactor to recover water from metabolic carbon dioxide. In order to maximize oxygen loop closure, a byproduct of the system, methane, must be reduced to recover hydrogen. NASA is currently exploring a microwave plasma methane pyrolysis system for this purpose. The resulting product stream of this technology includes unreacted methane, product hydrogen, and acetylene. The hydrogen and the small amount of unreacted methane resulting from the pyrolysis process can be returned to the Sabatier reactor thereby substantially improving the overall efficiency of the system. However, the acetylene is a waste product that must be removed from the pyrolysis product. Two materials have been identified as potential sorbents for acetylene removal: zeolite 4A, a commonly available commercial sorbent, and HKUST-1, a newly developed microporous metal. This paper provides an explanation of the rationale behind acetylene removal and the results of separation testing with both materials
机译:最新的二氧化碳减排技术使用Sabatier反应器从代谢二氧化碳中回收水。为了最大程度地关闭氧气回路,必须还原系统的副产品甲烷以回收氢气。 NASA目前正在为此目的开发微波等离子体甲烷热解系统。该技术的最终产物流包括未反应的甲烷,产物氢和乙炔。可以将由热解过程产生的氢气和少量未反应的甲烷返回至Sabatier反应器,从而显着提高系统的整体效率。但是,乙炔是必须从热解产物中除去的废产物。已经确定了两种材料可作为去除乙炔的潜在吸附剂:沸石4A(一种常见的商用吸附剂)和HKUST-1(一种新开发的微孔金属)。本文提供了乙炔去除原理以及两种材料分离测试结果的解释

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