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Synthesis and Characterization of Covalent Triazine Framework CTF-1@Polysulfone Mixed Matrix Membranes and Their Gas Separation Studies

机译:共价三嗪骨架CTF-1 @聚砜混合基质膜的合成,表征及气体分离研究

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Covalent triazine framework CTF-1 and polysulfone (PSF) are used to form mixed-matrix membranes (MMMs) with 8 wt%, 16 wt% and 24 wt% of the porous filler material CTF-1. Studies on permeability and selectivity are carried out concerning the gases O2, N2, CO2 and CH4. CO2 permeability of the synthesized MMMs increases by 5.4 Barrer in comparison to the pure PSF membrane. The selectivity remains unchanged for O2/N2 and CO2/CH4 but was found to be increased for CO2/N2. Further, comparisons to theoretical models for permeability prediction yield a permeability for CTF-1 which is about six times higher than the permeability of PSF. The inverse of the sum of the free fractional volumes (FFV) of the polymer and the filler correlate linearly to the logarithm of the permeabilities of the gases which conversely indicates that the porosity of the filler contributes to the gas transport through the membrane.
机译:共价三嗪骨架CTF-1和聚砜(PSF)用于形成混合基质膜(MMM),其中多孔填料CTF-1占8%,16%和24%。对气体O2,N2,CO2和CH4的渗透性和选择性进行了研究。与纯PSF膜相比,合成MMM的CO2渗透性提高了5.4 Barrer。对于O2 / N2和CO2 / CH4的选择性保持不变,但发现对CO2 / N2的选择性增加。此外,与渗透率预测的理论模型进行比较,得出CTF-1的渗透率大约是PSF渗透率的六倍。聚合物和填料的自由分数体积(FFV)之和的倒数与气体渗透率的对数线性相关,这反过来表明填料的孔隙度有助于气体通过膜的传输。

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