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Dependence of hydrogen flux on the pore size and plating surface topology of asymmetric Pd-porous stainless steel membranes

机译:氢气通量对不对称PD多孔不锈钢膜孔径和电镀表面拓扑的依赖性

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The influence of the support properties on the characteristics of Pd/PSS composite membranes has been evaluated for a large group of membrane samples prepared by electroless plating. The H_2 permeation in the membranes was found to follow Sievert's law between 325-500°C. The steady state H, flux was stable for over 200 h. The hydrogen permeance was measured at 350°C with a 1-atm pressure difference and ranged from 20.0 to 5.1 m~3/(m~2·h·atm~(0.5)) for a Pd layer thickness of 11.7 and 33.8 μm, respectively. The thickness of the membranes and therefore the permeance obtained was dependent on the size of the largest pores present in the support. The thickness of the Pd layer was approximately three times the dimension of the largest pores in the support, consistent with the previous theoretical results of Ma et al. [3].
机译:已经评估了支持性质对PD / PSS复合膜特性的影响,用于通过化学镀制备的一大组膜样品。发现膜中的H_2渗透在325-500°C之间遵循Sievert的定律。稳态H,通量超过200小时稳定。在350℃下测量氢气渗透率1倍压差,范围为20.0至5.1m〜3 /(m〜2·h·ATM〜(0.5)),为PD层厚度为11.7和33.8μm,分别。因此,所获得的膜的厚度依赖于载体中存在最大孔的尺寸。 PD层的厚度约为载体中最大孔的尺寸的三倍,与先前的MA等人的理论结果一致。 [3]。

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