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含MIL-101(Fe)/GO复合材料的Pebax® 2533/PVDF薄膜混合基质膜用于二氧化碳捕获

Pebax® 2533/PVDF thin film mixed matrix membranes containing MIL-101 (Fe)/GO composite for CO capture.

作者信息

Li Guoqiang, Kujawski Wojciech, Knozowska Katarzyna, Kujawa Joanna

机构信息

Nicolaus Copernicus University in Toruń, Faculty of Chemistry, 7 Gagarina Street Toruń 87-100 Poland

出版信息

RSC Adv. 2022 Oct 12;12(45):29124-29136. doi: 10.1039/d2ra05095a. eCollection 2022 Oct 11.

Abstract

MIL-101 (Fe) and MIL-GO composites were successfully synthesized and used as fillers for the preparation of Pebax® 2533/PVDF thin film MMMs for CO/N separation. The defect-free Pebax® 2533/PVDF thin film MMMs were fabricated by casting the Pebax solution containing fillers on the PVDF support. The presence of GO nanosheets in the reaction solution did not destroy the crystal structure of MIL-101 (Fe). However, the BET surface area and total pore volume of MIL-GO decreased dramatically, comparing with MIL-101 (Fe). The incorporation of MIL-GO-2 into Pebax matrix simultaneously increased the CO permeability and the CO/N ideal selectivity of Pebax® 2533/PVDF thin film MMMs mainly owing to the porous structure of MIL-GO-2, and the tortuous diffusion pathways created by GO nanosheets. MMMs containing 9.1 wt% MIL-GO-2 exhibited the highest CO permeability equal to 303 barrer (1 barrer = 10 cm (STP) cm cm s cmHg) and the highest CO/N ideal selectivity equal to 24. Pebax-based MMMs containing composite fillers showed higher gas separation performance than the Pebax-based MMMs containing single filler (GO or MOFs). Therefore, the synthesis and utilization of 3D@2D composite filler demonstrated great potential in the preparation of high-performance MMMs for gas separation processes.

摘要

成功合成了MIL-101(Fe)和MIL-GO复合材料,并将其用作填料,用于制备用于CO/N分离的Pebax® 2533/PVDF薄膜混合基质膜(MMMs)。通过将含有填料的Pebax溶液浇铸在PVDF载体上,制备出无缺陷的Pebax® 2533/PVDF薄膜MMMs。反应溶液中氧化石墨烯(GO)纳米片的存在并未破坏MIL-101(Fe) 的晶体结构。然而,与MIL-101(Fe)相比,MIL-GO的比表面积和总孔体积显著降低。将MIL-GO-2掺入Pebax基体中,同时提高了Pebax® 2533/PVDF薄膜MMMs的CO渗透率和CO/N理想选择性,这主要归因于MIL-GO-2的多孔结构以及GO纳米片形成的曲折扩散通道。含有9.1 wt% MIL-GO-2的MMMs表现出最高的CO渗透率,等于303巴雷(1巴雷 = 10⁻¹⁰ cm³(标准状况)·cm/cm²·s·cmHg),以及最高的CO/N理想选择性,等于24。含有复合填料的Pebax基MMMs比含有单一填料(GO或金属有机框架材料(MOFs))的Pebax基MMMs表现出更高的气体分离性能。因此,3D@2D复合填料的合成与应用在制备用于气体分离过程的高性能MMMs方面显示出巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56e4/9555015/e82935c8f7f1/d2ra05095a-f1.jpg

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