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CH4-Selective Mixed-Matrix Membranes Containing Functionalized Silica for Natural Gas Purification

机译:CH4选择性混合基质膜,用于天然气纯化的官能化二氧化硅

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摘要

Mixed-matrix membranes were prepared by incorporating functionalized silica nanoparticles (SNPs) into the poly(ether-block-amide). The gas permeation properties of membranes were investigated for the separation of N(2)and CO(2)from CH4. Results revealed that chemical modification of SNPs and incorporation of the carboxylic groups on its surface had a strong interaction with the polymer matrix and improved the distribution of the nanofiller in the membrane matrix. According to the gas permeation experiments at various SNPs loadings and feed pressures, different trends were observed for the permeability and selectivity. Incorporation of the modified-SNPs nanofiller into the membrane enhanced the CH(4)permeability, as well as the CH4/N(2)and CO2/N(2)selectivities.
机译:通过将官能化的二氧化硅纳米粒子(SNP)掺入聚(醚嵌段 - 酰胺)来制备混合基质膜。 研究了膜的气体渗透性能从CH 4分离N(2)和CO(2)。 结果表明,SNP的化学改性和其表面上掺入羧基的掺入具有强烈的与聚合物基质相互作用,并改善了纳米填充物在膜基质中的分布。 根据各种SNPs载荷和进料压力的气体渗透实验,观察到渗透性和选择性的不同趋势。 将改性的SNP纳米填充物掺入膜中增强了CH(4)渗透率,以及CH 4 / N(2)和CO 2 / N(2)选择性。

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