模拟CO2和N2通过分散在聚砜中的含氧碳纳米管混合基质膜的渗透

Thales Almeida Barbosa, M. C. Flores, Kátia Cecília de Souza Figueiredo
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引用次数: 0

摘要

混合基质膜(MMMs)由聚合相和分散的固体填料(如沸石或碳纳米管)组成。我们制备了含有功能化多壁碳纳米管(MWNT-O)的对称和不对称聚砜基MMMs用于CO2/N2分离。采用麦克斯韦模型预测mmmm的渗透率。利用该模型获得的渗透率与对称mm模型拟合得很好,特别是对于CO2。这可能归因于该体系对聚合物基体的高亲和力。使用麦克斯韦模型记录的渗透性不能反映不对称膜的特性,这可能是由于填充物周围产生空隙或皮肤表面存在缺陷。最后,提出了一种数学拟合方法来提高两种MMM系统的预测精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling CO2 and N2 Permeation through Mixed Matrix Membranes Containing Oxygenated Carbon Nanotubes Dispersed in Polysulfone
Mixed matrix membranes (MMMs) consist of a polymeric phase and a dispersed solid filler such as zeolites or carbon nanotubes. We prepared symmetric and asymmetric polysulfone-based MMMs containing functionalized multi-walled carbon nanotubes (MWNT-O) for CO2/N2 separation. Maxwell’s model was used to predict the permeabilities of MMMs. The permeability achieved using the model exhibited a good fit of the model in symmetric MMMs, especially for CO2. This can be potentially attributed to the high affinity of the system toward the polymer matrix. The permeability recorded using Maxwell’s model could not reflect the properties of the asymmetric membranes, and this could be attributed to the generation of voids around the fillers or defects present on the surface of the skin. Finally, a mathematical fit was proposed to improve prediction accuracy for both the MMM systems.
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