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High Capacity Adsorbent Development for Carbon Dioxide Removal System Efficiency Improvements

机译:大容量吸附剂的开发,可提高二氧化碳去除系统的效率

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Regenerable carbon dioxide removal is a key element for successful, long-term manned space flight missions. Currently, the International Space Station (ISS) utilizes zeolite molecular sieves as part of its regenerable carbon dioxide removal system. The zeolite molecular sieve utilized in this system was based on 1980's technology. Since then molecular sieve technology has improved significantly with the advent of adsorbents with greater carbon dioxide adsorption capacity and reduced attrition through immobilization. A carbon dioxide removal system that incorporates these new zeolite molecular sieve technologies would provide improved crew health through lower cabin carbon dioxide partial pressures and improved system performance through reduced system equivalent mass. Honeywell has conducted preliminary evaluations of Ion Exchanged X (IEX) zeolite molecular sieves for carbon dioxide removal, which have shown increased carbon dioxide capacities compared to those used in the ISS CDRA. To further improve the adsorbent's attrition properties, this IEX zeolite can be used in conjunction with Honeywell's immobilization technology, developed for the adsorbent beds used in the On-Board Oxygen Generation System (OBOGS) units. This technology uses a polymeric binder and forms the adsorbent into a molded porous bed, which resists attrition and dust generation. Since the polymeric binder replaces the clay binder normally used in zeolites, a significant increase in the dynamic capacity of the adsorbent bed also results.
机译:可再生的二氧化碳去除是成功进行长期载人航天飞行任务的关键要素。当前,国际空间站(ISS)利用沸石分子筛作为其可再生二氧化碳去除系统的一部分。该系统中使用的沸石分子筛是基于1980年代的技术。从那时起,随着具有更高二氧化碳吸附能力和通过固定减少磨损的吸附剂的问世,分子筛技术得到了显着改善。结合了这些新型沸石分子筛技术的二氧化碳去除系统将通过降低机舱二氧化碳分压来改善机组人员的健康状况,并通过减少系统当量来提高系统性能。霍尼韦尔(中国)已对离子交换X(IEX)沸石分子筛对二氧化碳的去除进行了初步评估,与ISS CDRA中使用的分子筛相比,二氧化碳显示出了更高的二氧化碳吸收能力。为了进一步改善吸附剂的磨损特性,该IEX沸石可与霍尼韦尔的固定化技术结合使用,后者是为车载氧气发生系统(OBOGS)单元中使用的吸附剂床开发的。该技术使用聚合物粘合剂,将吸附剂形成模压多孔床,从而防止磨损和粉尘的产生。由于聚合物粘合剂代替了沸石中通常使用的粘土粘合剂,因此吸附床的动态容量也显着增加。

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