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以铟基二维和三维金属有机框架为填料、聚砜为基体的新型混合基质膜用于CO/CH混合气体分离。

Novel mixed matrix membranes with indium-based 2D and 3D MOFs as fillers and polysulfone for CO/CH mixed gas separation.

作者信息

Jonnalagedda Aditya, Kuncharam Bhanu Vardhan Reddy

机构信息

a, Department of Chemical Engineering, Birla Institute of Technology & Science, Pilani Campus Pilani Rajasthan 333031 India

出版信息

RSC Adv. 2025 Jan 29;15(4):2996-3007. doi: 10.1039/d4ra08557d. eCollection 2025 Jan 23.

Abstract

To address the limitations of polymeric membranes, mixed matrix membranes for CO separation from biogas mixtures (CO and CH) have been investigated utilizing various fillers. In this study, we investigated novel MMMs using 3D and 2D indium-based MOFs, MIL-68(In)-NH and In(aip), in a polysulfone polymer matrix. To confirm synthesis, both fillers were subjected to XRD and FTIR analysis, as well as FESEM characterization to assess their 2D and 3D structures. BET analysis revealed the pore size of MOFs. MMMs were characterized using XRD, FTIR, FESEM, and DSC to determine various membrane characteristics. MMMs were tested with CO : CH of 60 : 40 vol% to mimic the biogas mixture, and the CO permeability of 144 Barrer and 79.2 Barrer was obtained for 20 wt% In(aip)/PSF membrane and 15 wt% MIL-68(In)-NH/PSF membrane. The highest CO/CH selectivities of 19.8 and 24.4 were obtained for 15 wt% MIL-68(In)-NH/PSF MMM and 10 wt% In(aip)/PSF MMM, respectively. The gas permeation findings of this study were compared with existing literature and long-term stability analysis was done to assess the performance of membranes for commercial standards.

摘要

为了克服聚合物膜的局限性,人们利用各种填料研究了用于从沼气混合物(CO和CH)中分离CO的混合基质膜。在本研究中,我们在聚砜聚合物基质中使用3D和2D铟基金属有机框架材料MIL-68(In)-NH和In(aip)研究了新型混合基质膜。为了确认合成情况,对两种填料进行了XRD和FTIR分析,以及FESEM表征以评估其2D和3D结构。BET分析揭示了金属有机框架材料的孔径。使用XRD、FTIR、FESEM和DSC对混合基质膜进行表征以确定各种膜的特性。用60 : 40 vol%的CO : CH测试混合基质膜以模拟沼气混合物,对于20 wt% In(aip)/PSF膜和15 wt% MIL-68(In)-NH/PSF膜,CO渗透率分别为144 Barrer和79.2 Barrer。对于15 wt% MIL-68(In)-NH/PSF混合基质膜和10 wt% In(aip)/PSF混合基质膜,分别获得了最高的CO/CH选择性,为19.8和24.4。本研究的气体渗透结果与现有文献进行了比较,并进行了长期稳定性分析以评估膜在商业标准下的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12b4/11775751/0300e0eb4d47/d4ra08557d-f1.jpg

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