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Evaluation of Bosch-Based Systems Using Non-Traditional Catalysts at Reduced Temperatures

机译:低温下使用非传统催化剂对基于Bosch的系统进行评估

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摘要

Oxygen and water resupply make open loop atmosphere revitalization (AR) systems unfavorable for long-term missions beyond low Earth orbit. Crucial to closing the AR loop are carbon dioxide reduction systems with low mass and volume, minimal power requirements, and minimal consumables. For this purpose, NASA is exploring using Bosch-based systems. The Bosch process is favorable over state-of-the-art Sabatier-based processes due to complete loop closure. However, traditional operation of the Bosch required high reaction temperatures, high recycle rates, and significant consumables in the form of catalyst resupply due to carbon fouling. A number of configurations have been proposed for next-generation Bosch systems. First, alternative catalysts (catalysts other than steel wool) can be used in a traditional single-stage Bosch reactor to improve reaction kinetics and increase carbon packing density. Second, the Bosch reactor may be split into separate stages wherein the first reactor stage is dedicated to carbon monoxide and water formation via the reverse water-gas shift reaction and the second reactor stage is dedicated to carbon formation. A series system will enable maximum efficiency of both steps of the Bosch reaction, resulting in optimized operation and maximum carbon formation rate. This paper details the results of testing of both single-stage and two-stage Bosch systems with alternative catalysts at reduced temperatures. These results are compared to a traditional Bosch system operated with a steel wool catalyst.
机译:氧气和水的补给使开环大气活化(AR)系统不利于在低地球轨道之外进行长期任务。封闭AR回路的关键是二氧化碳减排系统,该系统的体积小,体积小,功率要求低,消耗品少。为此,NASA正在探索使用基于博世的系统。由于完全闭环,与基于Sabatier的最新工艺相比,Bosch工艺更有利。然而,传统的博世操作需要高反应温度,高循环速率,并且由于碳结垢而需要以催化剂再供应形式的大量消耗品。对于下一代Bosch系统,已经提出了许多配置。首先,可以在传统的单级博世反应器中使用替代催化剂(除钢丝绒以外的催化剂)来改善反应动力学并增加碳堆积密度。第二,可将博世反应器分成单独的阶段,其中第一反应器阶段专用于通过反向水煤气变换反应形成一氧化碳和水,而第二反应器阶段专用于形成碳。串联系统将使Bosch反应的两个步骤的效率最大化,从而优化操作并最大程度地提高碳的形成速度。本文详细介绍了在降低的温度下使用替代催化剂对单级和两级Bosch系统进行测试的结果。将这些结果与使用钢丝绒催化剂操作的传统Bosch系统进行了比较。

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