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Preparation of thin Pd-based composite membrane on planar metallic substrate Part I: Pre-treatment of porous stainless steel substrate

机译:在平面金属基底上制备基于Pd的复合薄膜的第一部分:多孔不锈钢基底的预处理

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摘要

Pd-based membranes are of increasing interest for hydrogen separation and purification due to their good thermal stability, high permeability and perfect selectivity. The membranes are generally prepared in a composite structure consisting of a thin Pd-based layer on a porous substrate to reduce Pd cost and increase hydrogen permeability. The integrity of a composite Pd-based membrane, and accordingly its selectivity, are highly dependent on the quality of the substrate. Porous stainless steel is an attractive substrate due to its similar thermal expansion coefficient to the Pd-based films, ease of fabrication, good weldability, ductility and low cost. However, the surface roughness and largest pore size of even the best commercially available porous stainless steel substrates are too large, typically ~10-20 μm. Therefore, a proper pre-treatment is essential to deposit a thin pinhole-free Pd-based layer on the substrate. This paper presents a method to pre-treat the porous stainless steel substrate, including polishing, etching and coating with alumina particles. Polishing decreased the surface roughness of the substrate. Alumina coating served as several roles: further smoothening the surface, decreasing the pore size of the substrate and preventing interdiffusion between the Pd-based layer and substrate at elevated temperatures. Permeation properties and surface morphologies of the substrate are investigated before and after pre-treatment.
机译:钯基膜因其良好的热稳定性,高渗透性和完美的选择性而对氢的分离和纯化越来越感兴趣。通常将膜制备为复合结构,该复合结构由多孔基材上的基于Pd的薄层组成,以降低Pd成本并提高氢渗透性。复合的基于Pd的膜的完整性及其选择性在很大程度上取决于基质的质量。多孔不锈钢由于其热膨胀系数与Pd基薄膜相似,易于制造,可焊性,延展性和低成本而成为有吸引力的基材。但是,即使最好的市售多孔不锈钢基材的表面粗糙度和最大孔径也太大,通常约为10-20μm。因此,适当的预处理对于在基板上沉积无针孔的薄Pd基层至关重要。本文提出了一种预处理多孔不锈钢基材的方法,包括抛光,蚀刻和涂覆氧化铝颗粒。抛光降低了基材的表面粗糙度。氧化铝涂层起着几个作用:进一步使表面光滑,减小基材的孔径并防止高温下Pd基层与基材之间的相互扩散。在预处理之前和之后研究基材的渗透性能和表面形态。

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