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Development and Characterization of Defect-Free Matrimid® Mixed-Matrix Membranes Containing Activated Carbon Particles for Gas Separation

机译:包含用于气体分离的活性炭颗粒的无缺陷Matrimid®混合基质膜的开发与表征

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摘要

In this work, mixed-matrix membranes (MMMs) for gas separation in the form of thick films were prepared via the combination of the polymer Matrimid® 5218 and activated carbons (AC). The AC particles had a mean particle size of 1.5 μm and a mean pore diameter of 1.9 nm. The films were prepared by slow solvent evaporation from casting solutions in chloroform, which had a varying polymer–AC ratio. It was possible to produce stable films with up to a content of 50 vol % of AC. Thorough characterization experiments were accomplished via differential scanning calorimetry and thermogravimetric analysis, while the morphology of the MMMs was also investigated via scanning electron microscopy. The gas transport properties were revealed by employing time-lag measurements for different pure gases as well as sorption balance experiments for the filler particles. It was found that defect free Matrimid® MMMs with AC were prepared and the increase of the filler content led to a higher effective permeability for different gases. The single gas selectivity αij of different gas pairs maintained stable values with the increase of AC content, regardless of the steep increase in the effective permeability of the pure gases. Estimation of the solubilities and the diffusivities of the Matrimid®, AC, and MMMs allowed for the explanation of the increasing permeabilities of the MMMs, with the increase of AC content by modelling.
机译:在这项工作中,通过聚合物Matrimid ® 5218和活性炭(AC)的组合制备了厚膜形式的用于气体分离的混合基质膜(MMM)。 AC颗粒的平均粒径为1.5μm,平均孔径为1.9nm。薄膜是通过从氯仿中的流延溶液中缓慢蒸发溶剂而制得的,氯仿具有不同的聚合物-AC比。可以生产高达AC的50 vol%的稳定薄膜。通过差示扫描量热法和热重分析法完成了彻底的表征实验,同时还通过扫描电子显微镜研究了MMM的形态。通过对不同的纯气体进行时滞测量以及对填料颗粒进行吸附平衡实验,揭示了气体的传输特性。结果发现,制备了带有AC的无缺陷Matrimid ® MMM,并且填料含量的增加导致了对不同气体的更高的有效渗透率。随纯气有效渗透率的急剧增加,随着AC含量的增加,不同气体对的单一气体选择性αij保持稳定的值。对Matrimid ®,AC和MMM的溶解度和扩散性的估算可以解释MMM渗透率的增加,并通过建模来说明AC含量的增加。

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