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Polyimide based mixed matrix membranes incorporating Cu-BDC nanosheets for impressive helium separation

机译:基于聚酰亚胺的混合基质膜,包括Cu-BDC纳米片,用于令人印象深刻的氦气分离

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摘要

Incompatibility between particles and polymers has the adverse consequence on the performance of mixed matrix membranes (MMMs). To overcome this problem, MMMs containing Cu-BDC nanosheets with two various polyimides (6FDA-DAM and Matrimid) were fabricated and tested for He separation. High aspect ratio of nanosheets (more than 100) was confirmed by TEM and AFM Analyses. FESEM images of MMMs showed that the nanosheets were uniformly distributed all over the matrices and there was no symptom of micro scale polymer-filler phase void up to 15 wt%. Also due to the interface interaction established between two phases, rigidification of chains happened and resulted in increasing T-g and decreasing FFV of polymers. Addition of particles to matrices led to the permeability of He increased slightly until 9 wt% loading, but it was reduced at 12 and 15 wt %. Actually, the oriented stacking of nanosheets caused the permeability of CH4 and N-2 reduced significantly and gave rise to developed ideal selectivities. The best MMMs for both polymers was observed at loading of 15 wt%, so that for 6FDA-DAM based MMM, He/CH4 and He/N-2 ideal selectivities enhanced by 2570 and 2320% compared to pure 6FDA-DAM and surpassed the 2008 Robeson upper bound.
机译:颗粒和聚合物之间的不相容性具有对混合基质膜(MMM)的性能的不利后果。为了克服这个问题,制造并测试含有两种各种聚酰亚胺(6FDA-坝和基质)的Cu-BDC纳米片的MMM,并测试他分离。通过TEM和AFM分析证实了纳米片(超过100)的高纵横比。 MMM的FeSEM图像显示纳米片均匀地分布在基质上,并且没有微尺度聚合物填充相空隙的症状高达15wt%。而且还由于两相之间建立的界面相互作用,致力于致力于增加T-g和聚合物的FFV降低。向基质中加入颗粒导致他略微增加的颗粒,直至9wt%负荷,但在12和15wt%下降低。实际上,纳米片的定向堆叠导致CH4和N-2的渗透性显着降低,并产生了理想的选择性。在15wt%的负载下观察到两种聚合物的最佳MMM,使得对于6FDA - 坝的MMM,HE / CH4和HE / N-2理想选择性与纯6FDA坝相比增强了2570和2320%,并超越了2008年罗伯森上限。

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