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Influence of the type of siliceous material used as intermediate layer in the preparation of hydrogen selective palladium composite membranes over a porous stainless steel support

机译:用作中间层的硅质材料类型对多孔不锈钢载体上氢选择性钯复合膜制备的影响

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In this work, several composite membranes were prepared by Pd electroless plating over modified porous stainless steel tubes (PSS). The influence of different siliceous materials used as intermediate layers was analyzed in their hydrogen permeation properties. The addition of three intermediate siliceous layers over the external surface of PSS (amorphous silica, silicalite-1 and HMS) was employed to reduce both roughness and pore size of the commercial PSS supports. These modifications allow the deposition of a thinner and continuous layer of palladium by electroless plating deposition. The technique used to prepare these silica layers on the porous stainless steel tubes is based on a controlled dip-coating process starting from the precursor gel of each silica material. The composite membranes were characterized by SEM, AFM, XRD and FT-IR. Moreover they were tested in a gas permeation set-up to determine the hydrogen and nitrogen permeability and selectivity. Roughness and porosity of original PSS supports were reduced after the incorporation of all types of silica layers, mainly for silicalite-1. As a consequence, the palladium deposition by electroless plating was clearly influenced by the feature of the intermediate layer incorporated. A defect free thin palladium layer with a thickness of ca. 5 μm over the support modified with silicalite-1 was obtained, showing a permeance of 1.423 · 10~(4-) mol m~(-2) s~(-1) Pa~(0.5) and a complete ideal permselectivity of hydrogen.
机译:在这项工作中,通过在改性多孔不锈钢管(PSS)上进行化学镀Pd制备了几种复合膜。分析了用作中间层的不同硅质材料对氢的渗透性能的影响。在PSS外表面上添加了三个中间硅质层(无定形二氧化硅,silicalite-1和HMS),以减少商用PSS载体的粗糙度和孔径。这些修改允许通过化学镀沉积来沉积更薄且连续的钯层。在多孔不锈钢管上制备这些二氧化硅层的技术是基于从每种二氧化硅材料的前体凝胶开始的受控浸涂工艺。通过SEM,AFM,XRD和FT-IR对复合膜进行了表征。此外,在气体渗透装置中对它们进行了测试,以确定氢和氮的渗透性和选择性。掺入所有类型的二氧化硅层(主要用于silicalite-1)后,原始PSS载体的粗糙度和孔隙率降低。结果,通过化学镀的钯沉积明显受到所结合的中间层的特征的影响。无缺陷的钯薄层,厚度约为。得到超过silicalite-1改性载体的5μm,表现出1.423·10〜(4-)mol m〜(-2)s〜(-1)Pa〜(0.5)的透过率和氢的完全理想的选择性渗透。

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