首页> 外文期刊>Journal of Membrane Science >Solubility-based gas separation with oligomer-modified inorganic membranes Part II. Mixed gas permeation of 5 nm alumina membranes modified with octadecyltrichlorosilane
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Solubility-based gas separation with oligomer-modified inorganic membranes Part II. Mixed gas permeation of 5 nm alumina membranes modified with octadecyltrichlorosilane

机译:用低聚物改性的无机膜进行基于溶解度的气体分离,第二部分。十八烷基三氯硅烷改性的5 nm氧化铝膜的混合气体渗透

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Following the ideas presented in a previous publication [J. Membr. Sci. 187 (2001) 141], hybrid organic/inorganic membranes were prepared by the surface-derivatization of commercially available mesoporous alumina membranes with octadecyltrichlorosilane (OTS). Ideal and mixed gas selectivities for propaneitrogen and butane/methane systems were obtained at different inlet feed pressures and compositions. The membranes were always selective for the heavier species over the lighter, which is indicative of a solubility-based separation. The mixed gas selectivities were generally greater than or equal to the corresponding ideal values. Interestingly, the dependence of mixed gas selectivity on feed pressure was qualitatively different for the two different gas pairs. Apparent competitive and cooperative effects between the permeating gas species were observed under different conditions. Overall, the permeation characteristics of the hybrids were more consistent with a dense polymeric material rather than a porous one.
机译:遵循先前出版物中提出的想法[J.膜科学187(2001)141],通过用十八烷基三氯硅烷(OTS)对市售的介孔氧化铝膜进行表面衍生化来制备有机/无机杂化膜。在不同的入口进料压力和组成下,可获得丙烷/氮气和丁烷/甲烷系统的理想和混合气体选择性。膜对较重的物种始终具有选择性,这表明基于溶解度的分离。混合气体的选择性通常大于或等于相应的理想值。有趣的是,对于两种不同的气体对,混合气体选择性对进料压力的依赖性在质量上是不同的。在不同条件下,观察到了渗透气体之间的明显竞争和协同作用。总体而言,杂化物的渗透特性与致密的聚合物材料而不是多孔的材料更一致。

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