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Preparation of Double Layer Membrane Combined with Palladium Metal and FAU Zeolite for Catalytic Membrane Reactor

机译:钯金属和FAU分子筛结合的双层膜催化膜反应器的制备

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The preparation of a double-layer membrane by the combination of Pd metal and FAU zeolite was attempted to enhance the catalytic activity of the membrane reactor. The membrane was successfully synthesized on a porous alpha-Al2O3 support tube by the hydrothermal synthesis of the FAU zeolite layer followed by chemical vapor deposition of the Pd layer. The thicknesses of the FAU and Pd layers were ca. 5 mu m and 1 mu m, respectively. The membrane functioned efficiently as a hydrogen separation membrane without deterioration, due to the rigid connection of each layer. During the model reaction, such as the reaction of benzene and permeated hydrogen species from Pd membrane, the inner surface of the Pd layer that was in contact with the FAU layer exhibited high hydrogenation activity, in contrast to the outer surface. Scanning electron microscope observations reveal that one of the reasons for this observed difference is the roughness of the inner surface. Loading of Pd particles in the micropores of FAU zeolite layer by ion-exchange treatment resulted in enhancement of the hydrogenation activity. The FAU zeolite layer is suitable for loading of the highly dispersed active metal particles. The combination of Pd metal membrane and fine metal particles has potential for acceleration of catalytic membrane reactions.
机译:尝试通过Pd金属和FAU沸石的组合制备双层膜以增强膜反应器的催化活性。通过水热合成FAU沸石层,然后化学气相沉积Pd层,成功地在多孔α-Al2O3支撑管上合成了该膜。 FAU和Pd层的厚度约为。 5微米和1微米。由于各层的刚性连接,该膜有效地用作氢分离膜而不劣化。在模型反应期间,例如苯与Pd膜中渗透的氢物种发生反应,与FAU层接触的Pd层的内表面与外表面相比具有较高的氢化活性。扫描电子显微镜观察表明,观察到这种差异的原因之一是内表面的粗糙度。通过离子交换处理将Pd颗粒装载在FAU沸石层的微孔中导致氢化活性的提高。 FAU沸石层适合于装载高度分散的活性金属颗粒。 Pd金属膜和金属细颗粒的组合具有加速催化膜反应的潜力。

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