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Preparation and characterization of Pd-zeolite composite membranes for hydrogen separation

机译:氢分离钯沸石复合膜的制备与表征

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Zeolite A membranes have been synthesised by secondary growth on the surface of macroporous α-alumina and stainless steel tubular supports, previously seeded with zeolite A crystals. The membranes thus obtained were used in the separation of H_2/N_2 and H_2/C_3H_8 mixtures. Stainless steel supports appeared to be more adequate for the development of zeolite A membranes by secondary growth, as evidenced by the results of XRD analysis and by higher values of selectivity and gas permeance obtained. The resulting membranes were further modified by CVD of a Pd compound or impregnation with a Pd salt solution, in order to minimize the non-selective defects by Pd deposition. Permeation measurements carried out under pressure gradient did not show any apparent beneficial effect of Pd over H_2/N_2 separation. However, in permeation tests carried out using a sweep gas, higher separation factors were achieved (e.g., ideal selectivity H_2/C_3H_8 of 17.35 at 323 K, and H_2/C_3H_8 separation factor of 7.28 at the same temperature).
机译:沸石A膜是通过在大孔α-氧化铝和预先接种了沸石A晶体的不锈钢管状载体表面上二次生长而合成的。如此获得的膜用于分离H_2 / N_2和H_2 / C_3H_8混合物。 X射线衍射分析的结果以及获得的更高的选择性和气体渗透率值证明,不锈钢载体似乎更适合二次生长形成A型沸石膜。为了使通过Pd沉积而产生的非选择性缺陷最小化,通过对Pd化合物进行CVD或用Pd盐溶液浸渍来进一步修饰所得膜。在压力梯度下进行的渗透测量没有显示出钯对H_2 / N_2分离的任何明显的有益作用。但是,在使用吹扫气体进行的渗透测试中,获得了更高的分离系数(例如,在323 K下的理想选择性H_2 / C_3H_8分离系数为7.28,在相同温度下的H_2 / C_3H_8分离系数为7.28)。

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