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Permeability and Selectivity of PPO/Graphene Composites as Mixed Matrix Membranes for CO2 Capture and Gas Separation

机译:PPO /石墨烯复合材料的渗透性和选择性作为CO2捕获和气体分离的混合基质膜

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摘要

We fabricated novel composite (mixed matrix) membranes based on a permeable glassy polymer, Poly(2,6-dimethyl-1,4-phenylene oxide) (PPO), and variable loadings of few-layer graphene, to test their potential in gas separation and CO2 capture applications. The permeability, selectivity and diffusivity of different gases as a function of graphene loading, from 0.3 to 15 wt %, was measured at 35 and 65 °C. Samples with small loadings of graphene show a higher permeability and He/CO2 selectivity than pure PPO, due to a favorable effect of the nanofillers on the polymer morphology. Higher amounts of graphene lower the permeability of the polymer, due to the prevailing effect of increased tortuosity of the gas molecules in the membrane. Graphene also allows dramatically reducing the increase of permeability with temperature, acting as a “stabilizer” for the polymer matrix. Such effect reduces the temperature-induced loss of size-selectivity for He/N2 and CO2/N2, and enhances the temperature-induced increase of selectivity for He/CO2. The study confirms that, as observed in the case of other graphene-based mixed matrix glassy membranes, the optimal concentration of graphene in the polymer is below 1 wt %. Below such threshold, the morphology of the nanoscopic filler added in solution affects positively the glassy chains packing, enhancing permeability and selectivity, and improving the selectivity of the membrane at increasing temperatures. These results suggest that small additions of graphene to polymers can enhance their permselectivity and stabilize their properties.
机译:我们制造了基于可渗透的玻璃状聚合物,聚(2,6-二甲基-1,4-亚苯基氧化物)(PPO)和几层石墨烯的可变载荷的新型复合材料(混合基质)膜,以测试它们的气体潜力分离和CO2捕获应用。在35和65℃下测量不同气体作为石墨烯负载函数的渗透率,选择性和扩散性,从0.3〜15wt%测量。由于纳米填充物对聚合物形态的良好作用,具有小的石墨烯的载体的样品显示出比纯PPO更高的渗透率和HE / CO2选择性。由于膜中气体分子的曲线曲线增加的曲折效应,较高量的石墨烯较低的渗透性降低了聚合物的渗透性。石墨烯还允许显着降低温度的渗透率的增加,作为聚合物基质的“稳定剂”。这种效果降低了HE / N2和CO 2 / N 2的温度诱导的尺寸选择性损失,增强了对HE / CO2的温度诱导的选择性增加。该研究证实,如在其他基于石墨烯的混合基质玻璃膜的情况下观察到的,聚合物中石墨烯的最佳浓度低于1wt%。在这些阈值以下,在溶液中添加的纳米镜填料的形态度会产生正面的玻璃链填料,增强渗透性和选择性,并改善膜在增加温度下的选择性。这些结果表明,将石墨烯的少量添加到聚合物可以增强它们的渗滤性并稳定其性质。

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