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Enhanced propylene/propane separation by thermal annealing of an intrinsically microporous Hydroxyl-functionalized polyimide membrane

机译:通过本质上微孔羟基官能化的聚酰亚胺膜的热退火增强的丙烯/丙烷分离

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摘要

Effective separation of propylene/propane is vital to the chemical industry where C3H6 is used as feedstock for a variety of important chemicals. The purity requirements are currently met with cryogenic distillation, which is an extremely energy-intensive process. Hybrid arrangements incorporating highly selective membranes (α>20) have been proposed to “debottleneck” the process and potentially improve the economics. Selective and permeable membranes can be obtained by the design of polymers of intrinsic microporosity (PIMs). In this work, a 250 °C annealed polyimide (PIM-6FDA-OH) membrane produced among the highest reported pure-gas C3H6/C3H8 selectivity of 30 for a solution-processable polymer to date. The high selectivity resulted from enhanced diffusivity selectivity due to the formation of inter-chain charge-transfer-complexes. Although there were some inevitable losses in selectivity under 50:50 mixed-gas feed conditions due to competitive sorption, relatively high selectivities were preserved due to enhanced plasticization resistance.
机译:有效分离丙烯/丙烷对于化学工业至关重要,在化学工业中,C3H6被用作各种重要化学物质的原料。目前,低温蒸馏可以满足纯度要求,这是一个非常耗能的过程。提出了结合高选择性膜(α> 20)的混合装置以“消除瓶颈”的过程,并可能改善经济性。选择性和可渗透膜可通过设计固有微孔性(PIM)的聚合物来获得。在这项工作中,迄今为止,对于可溶液加工的聚合物,报道的最高纯气体C3H6 / C3H8选择性为30,在250°C退火的聚酰亚胺(PIM-6FDA-OH)膜上生产。高选择性归因于链间电荷转移复合物的形成,提高了扩散选择性。尽管由于竞争性吸附,在50:50混合气体进料条件下选择性不可避免地损失了一些,但由于增强的抗塑化性,保留了较高的选择性。

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