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Separation of Mixtures of Benzene and n-Alkanes Using an FAU-Type Zeolite Membrane

机译:使用FAU型沸石膜分离苯和正烷烃的混合物

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References(29) Cited-By(10) The vapor permeation properties of an FAU-type zeolite membrane, which was formed on the outer surface of a porous α-Al2O3 support tube, were determined in the temperature range of 358–413 K. The measurements were carried out using single-component benzene (Bz) and n-alkanes (C4-C7), as well as mixtures of benzene and n-alkanes. The hydrocarbons were diluted with nitrogen, and the partial pressures of hydrocarbons on the feed side were determined to be 7–8 kPa for the single-component systems and 4–5 kPa for each component of the binary systems. The permeate side was swept with a flow of nitrogen. The permeances were dependent on the permeation temperature and, to a greater extent, on the presence of benzene. For the single-component systems, the permeances were dependent on the diffusivities of the permeants, and the diffusivity of benzene through the membrane was the smallest of all the hydrocarbons tested. For the binary systems, however, benzene permeated at faster rates than any of the n-alkanes, and the permeances to n-alkanes were not directly dependent on their chain lengths. This benzene-selective permeation was realized using the FAU-type zeolite membrane with pore openings larger than the molecular size of benzene. The separation factors were affected by the partial pressures of permeants on the permeate side. When the partial pressures on the permeate side were in the range of 100–140 Pa for benzene and 1–4 Pa for n-alkanes, the separation factors at 373 K were 57 for Bz-C4, 70 for Bz-C5, 63 for Bz-C6, and 27 for Bz-C7. The adsorption selectivities for the binary systems on the feed-side surface of the membrane were 24 for Bz-C4 and 15 for Bz-C7, and were much higher than those for the single-component systems. This suggests that the adsorption of the n-alkanes on the FAU-type zeolites was strongly retarded by the selective adsorption of benzene.
机译:参考文献(29)引用了(10)在358-413 K的温度范围内测定了在多孔α-Al2O3支撑管的外表面上形成的FAU型沸石膜的蒸汽渗透性能。使用单组分苯(Bz)和正构烷烃(C4-C7)以及苯和正构烷烃的混合物进行测量。碳氢化合物用氮气稀释,进料侧碳氢化合物的分压确定为单组分系统为7–8 kPa,二元系统的每个组分为4–5 kPa。用氮气流扫过渗透侧。渗透率取决于渗透温度,并且在更大程度上取决于苯的存在。对于单组分系统,渗透率取决于渗透剂的扩散率,苯在整个膜中的扩散率是所有测试的烃中最小的。但是,对于二元体系,苯的渗透速率比任何正构烷烃都快,并且对正构烷烃的渗透率并不直接取决于它们的链长。这种苯选择性渗透是使用孔径大于苯分子大小的FAU型沸石膜实现的。分离因子受渗透物侧渗透物分压的影响。当渗透物侧的分压在苯的100-140 Pa和正构烷烃的1-4 Pa范围内时,Bz / n-C4的373 K分离因子为57,Bz / n-C为70。 C5,Bz / n-C6为63,Bz / n-C7为27。膜的进料侧表面上的二元体系的吸附选择性对于Bz / n-C4为24,对于Bz / n-C7为15,远高于单组分体系。这表明,苯的选择性吸附强烈阻碍了正构烷烃在FAU型沸石上的吸附。

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