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Hyperaging Tuning of a Carbon Molecular-Sieve Hollow Fiber Membrane with Extraordinary Gas-Separation Performance and Stability

机译:碳分子筛中空纤维膜的高度调整具有非凡的气体分离性能和稳定性

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This study reports 6FDA:BPDA-DAM polyimide-derived hollow fiber carbon molecular-sieve (CMS) membranes for hydrogen and ethylene separation. Since H-2/C2H4 selectivity is the lowest among H-2/(C-1-C-3) hydrocarbons, an optimized CMS fiber for this gas pair is useful for removing hydrogen from all-cracked gas mixtures. A process we term hyperaging provides highly selective CMS fiber membranes by tuning CMS ultramicropores to favor H-2 over larger molecules to give a H-2/C2H4 selectivity of over 250. Hyperaging conditions and a hyperaging mechanism are discussed in terms of an expedited physical aging process, which is largely controlled by the hyperaging temperature. For the specific CMS material considered here, a hyperaging temperature beyond 90 degrees C but less than 250 degrees C works best. Hyperaging also stabilizes CMS materials against physical aging and stabilizes the performance of H-2 separation over extended periods. This work opens a door in the development of CMS materials for the separation of small molecules from large molecules.
机译:本研究报告了6FDA:BPDA - 坝聚酰亚胺衍生的中空纤维碳分子筛(CMS)用于氢和乙烯分离的膜。由于H-2 / C2H4选择性是H-2 /(C-1-C-3)烃中最低的,因此该气体对的优化CMS纤维可用于从全裂化气体混合物中除去氢。通过调节CMS超微孔来优化高度选择性CMS纤维膜来优先于较大分子的H-2提供高度选择性CMS纤维膜,得到超过250的H-2 / C2H4选择性。根据快速的物理讨论了过度的条件和一个加重机制老化过程,主要由较高温度控制。对于此处考虑的特定CMS材料,超过90度C的增长温度,但少于250摄氏度。缓解也使CMS材料稳定在物理老化,并在延长的时期稳定H-2分离的性能。这项工作在开发CMS材料中开辟了一个门,用于将小分子与大分子分离。

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