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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Amine-functionalized SBA-15 in poly(styrene-b-butadiene-b-styrene) (SBS) yields permeable and selective nanostructured membranes for gas separation
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Amine-functionalized SBA-15 in poly(styrene-b-butadiene-b-styrene) (SBS) yields permeable and selective nanostructured membranes for gas separation

机译:聚(苯乙烯-b-丁二烯-b-苯乙烯)(SBS)中的胺官能化SBA-15产生用于气体分离的可渗透且选择性的纳米结构膜

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New nanostructured hybrid membranes for gas separation have been prepared and characterized for the first time in the literature by using a block copolymer, poly(styrene-b-butadiene-b-styrene) (SBS), and aminated SBA-15. Short mesopore channels, platelet SBA-15 particles with a high surface density of 3-aminopropyl grafts (3.8 nm~(-2)) and modest surface area reduction (45%) were prepared, characterized and used as a filler. The gas transport characterization of the hybrid membranes indicates that with a 10 wt% content of aminated filler, outstanding performances in terms of selectivity and permeability for the CH4/N2 and the CO2/N2 gas pairs can be obtained. In particular, the CH4/N2 ideal selectivity of 7.3 is higher than the values of the existing block co-polymers used for this separation and of mixed matrix membranes described to date in the literature. Membranes with such a high separation factor may enable the exploitation of natural gas with high N2 content and increase the amount of methane that can be economically recovered. The combination of the CO2/N2 ideal selectivity of 53 with a CO2 permeability of 173 Barrer demonstrates that the new hybrid membranes prepared in this study deserve further attention as a practical commercial solution also for the post-combustion capture of carbon dioxide. Finally, the small and flat particles dispersed in the polymer lend themselves to the fabrication of thin industrial membranes with enhanced productivity.
机译:通过使用嵌段共聚物,聚(苯乙烯-b-丁二烯-b-苯乙烯)(SBS)和胺化的SBA-15,制备并表征了用于气体分离的新型纳米结构杂化膜。制备了中孔通道短,具有3-氨基丙基接枝的高表面密度(3.8 nm〜(-2))和适度的表面积减少(45%)的血小板SBA-15颗粒,并对其进行了表征和用作填料。杂化膜的气体传输特性表明,胺化填料的含量为10 wt%时,可获得对CH4 / N2和CO2 / N2气体对的选择性和渗透性方面的出色性能。特别地,CH 4 / N 2的理想选择性为7.3,高于用于该分离的现有嵌段共聚物和迄今文献中所述的混合基质膜的值。具有如此高的分离因子的膜可以使得能够开采具有高N 2含量的天然气并增加可以经济地回收的甲烷量。 CO2 / N2理想选择性为53,CO2渗透率为173 Barrer的结合表明,本研究中制备的新型杂化膜作为燃烧后捕集二氧化碳的实用商业解决方案也应引起更多关注。最后,分散在聚合物中的小而扁平的颗粒有助于提高生产率的工业薄膜的制造。

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