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Preparation and gas permeation of nano-sized zeolite NaA-filled carbon membranes

机译:纳米NaA分子筛碳膜的制备及气体渗透

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Nano-sized zeolite NaA crystal-filled carbon membranes were prepared on the inner surface of porous tubular alumina supports by dip-coating method, using the precursor solutions prepared by dispersing different amounts of nano-sized zeolite NaA particles in the alcohol solutions of phenolic resin. Single gas permeation measurements were carried out to examine the gas separation properties of the membranes. It was found that the zeolite NaA-filled carbon membranes showed higher ideal selectivities but lower single gas permeances than the pure carbon membranes when all the membranes were prepared with two cycles of preparation processes. When the nano-sized zeolite NaA content was 2 wt.% in the precursor solution, the resulting carbon membrane exhibited highest O2/N2 permselectivity of 14.6 and CO2/N2 permselectivity of 159. Higher or lower zeolite NaA content than 2 wt.% in the precursor solutions resulted in lower ideal selectivities of the gas pairs of the corresponding membranes. The change of the gas permeance with temperature of the zeolite NaA-filled carbon membrane was similar to that of the pure carbon membranes, indicating the similar gas permeation mechanism through the two kinds of membranes.
机译:采用浸涂法,通过将前体溶液分散在酚醛树脂的醇溶液中制得的纳米颗粒前驱体溶液,通过浸涂法在多孔管状氧化铝载体的内表面上制备了纳米级分子筛NaA晶体填充碳膜。 。进行一次气体渗透测量以检查膜的气体分离特性。已经发现,当用两个制备过程循环制备所有膜时,沸石NaA填充的碳膜显示出比纯碳膜更高的理想选择性但更低的单气体渗透率。当前体溶液中的纳米沸石NaA含量为2 wt。%时,所得碳膜的最高O2 / N2渗透性为14.6,CO2 / N2渗透性为159。前体溶液导致相应膜的气体对的理想选择性降低。沸石NaA填充的碳膜的气体渗透率随温度的变化与纯碳膜相似,表明两种膜的气体渗透机理相似。

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