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A novel method for the synthesis of Silicalite-1 membrane: counter diffusion secondary growth

机译:合成硅沸石-1膜的新方法:反扩散二次生长

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Silicalite-1 membranes on macroporous alumina tubes were prepared by a novel method called counter-diffusion secondary growth (CDSG), which was different from the conventional methods by having two sides of the support wall contact with two different precursors which would react when they encountered with each other. Silicalite-1 crystals with sizes of 300-400 nm, 600-800 nm and 1600-1800 nm were coated on the supports as seeds. Tetraethyl orthosilicate (TEOS) and tetra-propyl ammonium bromide (TPABr) were used as silicon source and template in the CDSG process, respectively. XRD, SEM and single-gas permeation tests were used to Characterize the final membranes. Results showed the as-prepared membranes were typical Silicalite-1 membranes with well morphologies. The hydrogen permeance and H2/SF6 ideal separation factor of the membrane prepared by optimized conditions were up to 7.5×10 -7 mol·m -2 · s -1 ·Pa -1 and 103, respectively, at room temperature under a pressure drop of 0.1 MPa.
机译:通过称为反扩散二次生长(CDSG)的新方法制备硅沸石-1膜,其通过使支撑壁的两侧与常规方法不同于常规方法,与两种不同的前体接触,这将在遇到时反应彼此。涂有300-400nm,600-800nm和1600-1800nm的硅钛-1晶体涂覆在载体上。在CDSG方法中,使用四乙基异硅酸酯(TEOS)和四丙基溴化铵(TPABR)作为硅源和模板。 XRD,SEM和单气渗透试验用于表征最终膜。结果表明,制备的膜是典型的硅钛-1膜,其形态均匀。通过优化条件制备的膜的氢气渗透和H2 / SF6的理想分离因子分别在压力下降下在室温下分别高达7.5×10 -7mol·m-2·s -1·p -1和103 0.1 MPa。

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