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Pure- and mixed-gas propylene/propane permeation properties of spiro- and triptycene-based microporous polyimides

机译:螺线和三萜基微孔聚酰亚胺的纯气和混合气丙烯/丙烷渗透性能

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摘要

Solution-processable polyimides of intrinsic microporosity (PIM-PIs) comprising relatively inflexible and contorted backbones have demonstrated outstanding molecular-sieving behavior in membrane-based separation of gas/gas pairs. In this work, the effects of systematically increasing intra-chain rigidity on the propylene/propane separation properties were compared for PIM-PIs made from 2,3,5,6-tetramethyl-1,4-phenylene diamine (TMPD) and (i) spiro-centered dianhyride (SPDA-TMPD or PIM-PI-1) and (ii) 9,10-diisopropyltriptycene-based dianhydride (TPDA-TMPD or KAUST PI-1). Pure-gas experiments at 2 bar and 35 oC showed significant increases in C3H6 permeability and C3H6/C3H8 selectivity by transitioning from PIM-PI-1 (P(C3H6)=393 Barrer, α(C3H6/C3H8)=6) to KAUST-PI-1 (P(C3H6)=817 Barrer, α(C3H6/C3H8)=16), positioning KAUST-PI-1 considerably above the experimentally observed pure-gas C3H6/C3H8 polymer upper bound. However, 50:50 C3H6/C3H8 mixed-gas feeds induced significant losses in C3H6 permeability and C3H6/C3H8 selectivity relative to the 2 bar pure-gas data for PIM-PI-1 and KAUST-PI-1 as the C3H6/C3H8 selectivity dropped from 6 to 3 and 16 to 5, respectively, at 2 bar C3H6 partial pressure due to plasticization and competitive sorption.
机译:固有的微孔性(PIM-PI)的溶液可加工的聚酰亚胺,包括相对不易弯曲且扭曲的主链,在基于膜的气体/气体对分离中表现出出色的分子筛分性能。在这项工作中,比较了由2,3,5,6-四甲基-1,4-亚苯基二胺(TMPD)和(i)制备的PIM-PI,系统地提高链内刚性对丙烯/丙烷分离性能的影响。 )以螺为中心的二酐(SPDA-TMPD或PIM-PI-1)和(ii)基于9,10-二异丙基三茂基的二酐(TPDA-TMPD或KAUST PI-1)。在2 bar和35 oC的纯气实验中,通过从PIM-PI-1(P(C3H6)= 393 Barrer,α(C3H6 / C3H8)= 6)转变为KAUST-,C3H6渗透性和C3H6 / C3H8选择性显着提高。 PI-1(P(C3H6)= 817 Barrer,α(C3H6 / C3H8)= 16),将KAUST-PI-1定位在实验观察到的纯气C3H6 / C3H8聚合物上限的上方。但是,相对于PIM-PI-1和KAUST-PI-1的2 bar纯气数据,C3H6 / C3H8混合气体进料比例为50:50导致C3H6渗透率和C3H6 / C3H8选择性显着降低,因为C3H6 / C3H8的选择性由于增塑和竞争性吸附作用,在2 bar C3H6分压下,压降分别从6降至3和16降至5。

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