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Synthesis and property of novel gas mixed-matrix membrane with carbon nanotubes

机译:碳纳米管新型气体混合基质膜的合成与性能

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摘要

Mixed matrix membranes (MMMs) were fabricated by incorporating carboxylated multi-walled carbon nanotubes (MWCNTs) into a poly (arylene fluorene ether ketone) that contained amino groups (Am-PAFEK) matrix to improve CO2 separation performance. The combination of MWCNTs and Am-PAFEK exerted a favorable synergistic effect on the permeability and selectivity of membranes. The extraordinary smooth wall of MWCNTs acts as a highway through which gas passes, providing better permeability. The Am-PAFEK matrix itself has a dense internal structure that provides high gas selectivity. MWCNTs particles evenly distributed among the Am-PAFEK membrane due to the non-covalent bond interaction between the amino and carboxyl group. Efficient CO2 transport pathways were constructed by homogeneous dispersion of MWCNTs with in MMMs, leading to maintained good selectivity and enhanced permeability. When the amount of carbon nanotubes added was 3 wt.%, that increased by above 60% in comparison to the Am-PAFEK membrane permeability, the CO2/CH4 and CO2/N-2 selectivity of the Am-PAFEK/MWCNTs-3% membrane achieved 35.02 and 30.09, respectively. Therefore, the strategy of blending MWCNTs with Am-PAFEK exhibited a promising approach for improving gas permeability.
机译:通过将羧化的多壁碳纳米管(MWCNT)掺入包含氨基(AM-PAFEK)基质的聚(亚亚芴醚酮)中来制造混合基质膜(MMM)以改善CO 2分离性能。 MWCNT和AM-PAFEK的组合对膜的渗透性和选择性产生了有利的协同作用。 MWCNT的非凡光滑墙壁充当气体通过,提供更好的渗透性。 AM-PAFEK矩阵本身具有致密的内部结构,可提供高气体选择性。由于氨基和羧基之间的非共价键相互作用,MWCNT颗粒均匀分布在AM-Pafek膜中。高效的CO 2传输途径由MWCNTS与MMMS的均匀分散构成,导致保持良好的选择性和增强的渗透性。当添加的碳纳米管的量为3重量%时,与AM-Pafek膜渗透率,CO 2 / CH 4和CO 2 / N-2选择性增加,增加了60%以上的am-pafek / mwcnts-3%的选择性膜分别达到35.02和30.09。因此,将MWCNT与AM-PAFEK混合的策略表现出了提高煤气渗透性的有希望的方法。

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