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首页> 外文期刊>Petroleum Chemistry >Copolymers of 1-(3,3,3-Trifluoropropyldimethylsilyl)-1-Propyne with 1-Trimethylsilyl-1-Propyne as Membrane Materials for Separation of Gas Mixtures Containing Hydrocarbons
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Copolymers of 1-(3,3,3-Trifluoropropyldimethylsilyl)-1-Propyne with 1-Trimethylsilyl-1-Propyne as Membrane Materials for Separation of Gas Mixtures Containing Hydrocarbons

机译:1-(3,3,3-三氟丙二烷基二甲基甲硅烷基)-1-丙基的共聚物为1-三甲基甲硅烷基-1-丙基作为膜材料,用于分离含有烃的气体混合物

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Fluorinated copolymers with different compositions and geometric structures have been prepared from 1-trimethylsilyl-1-propyne and its fluorinated containing analogue 1-(3,3,3-trifluoropropyldimethylsilyl)-1-propyne and then studied. The copolymers combine resistance to different hydrocarbons with high permeability coefficients and high selectivity of n-butane separation from its mixture with the noncondensable hydrocarbon methane. High microporosity of the copolymers is confirmed by the results of the determination of the pore volume and pore surface area using low-temperature sorption of nitrogen and the investigation of the film surface by atomic force microscopy (AFM). It has been found that microporosity, which determines the transport properties of the copolymers, depends on both their comonomer composition and the microstructure formed at the stage of polymer synthesis catalyzed by a certain catalyst system. In particular, the copolymers produced in the presence of a TaCl5-Ph3Bi catalyst have a greater pore size and a larger pore surface area relative to copolymers with a similar composition formed in the presence of the NbCl5-Ph3SiH system. The high values of gas transport parameters of the obtained copolymers and their selectivity for recovery of condensable hydrocarbons from vapor-gas mixtures together with resistance to higher hydrocarbons make these copolymers promising membrane materials, e.g., for use in natural gas conditioning processes or separation of C3+ hydrocarbons from associated petroleum gas.
机译:具有不同组合物和几何结构的氟化共聚物由1-三甲基甲硅烷基-1-丙基制备,其含氟含有类似物1-(3,3,3-三氟丙烯二甲基甲基甲硅烷基)-1-proPyne,然后研究。共聚物将具有高渗透系数的耐烃与不同烃系数的高选择性与其与稀烃甲烷的混合物的高选择性高。通过使用氮气的低温吸附和通过原子力显微镜(AFM)的低温吸附来确定孔体积和孔表面积的结果,确认共聚物的高微孔。已经发现,确定共聚物的传输性质的微孔率取决于它们的共聚单体组合物和在由一定催化剂体系催化的聚合物合成阶段形成的微观结构。特别地,在TACL5-PH3BI催化剂存在下产生的共聚物具有更大的孔径和相对于在存在NBCL5-PH3SIH系统存在下形成的类似组合物的共聚物的更大孔表面积。所得共聚物的气体输送参数的高值及其从蒸汽混合物中回收可冷凝烃的选择性与对更高烃的耐药性使得这些共聚物承诺膜材料,例如用于天然气调理过程或分离C3 +来自相关石油气的碳氢化合物。

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