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首页> 外文期刊>Separation and Purification Technology >A comparison on gas separation between PES (polyethersulfone)/MMT (Na-montmorillonite) and PES/TiO2 mixed matrix membranes
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A comparison on gas separation between PES (polyethersulfone)/MMT (Na-montmorillonite) and PES/TiO2 mixed matrix membranes

机译:PES(聚醚砜)/ MMT(钠蒙脱土)与PES / TiO2混合基质膜之间气体分离的比较

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摘要

Polyethersulfone (PES)-based mixed matrix membranes (MMMs) with the incorporation of inorganic fillers of different shapes (lamellar Na-montmorillonite (MMT) clays and spherical TiO2 nanoparticles) were prepared in this study, and the resulting MMMs were characterized by TGA, DSC, XRD, SEM, and TEM. It was found that inorganic filler agglomeration became more serious at higher-filler-content MMMs. In the case of PES/MMT MMMs, both the CO2 and CH4 permeabilities increased significantly with the increasing filler content and consequently the gas selectivity was greatly reduced. At high MMT loadings (≥10 wt.%), Knudsen diffusion became the predominant gas transport mechanism. A different trend was achieved in the case of PES/TiO2 MMMs. The CO2/CH4 selectivity increased from 24.5 (pure PES membrane) to a maximum value of 38.5 at 4 wt.% TiO2 MMM and then decreased with a further increase in TiO2 content (e.g. 17.3 for 20 wt.%). The formation of interface voids and membrane defects in MMMs contributed to the high gas permeabilities and low gas selectivity.
机译:本研究制备了聚醚砜(PES)基混合基质膜(MMM),其中掺入了不同形状的无机填料(层状钠蒙脱土(MMT)粘土和球形TiO2纳米颗粒),并通过TGA对所得MMM进行了表征, DSC,XRD,SEM和TEM。发现在较高填料含量的MMM中,无机填料的团聚变得更加严重。在PES / MMT MMM的情况下,随着填料含量的增加,CO2和CH4的渗透率均显着增加,因此,气体的选择性大大降低。在高MMT负载(≥10wt。%)下,克努森扩散成为主要的气体传输机制。在PES / TiO2 MMM方面实现了不同的趋势。在TiO2 MMM含量为4%时,CO2 / CH4选择性从24.5(纯PES膜)增加到最大值38.5,然后随着TiO2含量的进一步增加而降低(例如20%的含量为17.3)。 MMM中界面空隙的形成和膜缺陷导致了高气体渗透性和低气体选择性。

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