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用于获得负载致密钯表面的优化中间层形成及化学镀方法。

Optimized intermediate layer formation and electroless plating methods to obtain supported dense Pd surfaces.

作者信息

Gümüşlü Gür Gamze, Toprak Berna

机构信息

Department of Chemical Engineering, Faculty of Chemical and Metallurgical Engineering, Istanbul Technical University, İstanbul, Turkiye.

Synthetic Fuels and Chemicals Technology Center, Istanbul Technical University, İstanbul, Turkiye.

出版信息

Turk J Chem. 2023 Dec 7;48(1):195-209. doi: 10.55730/1300-0527.3651. eCollection 2024.

Abstract

Dense metallic membranes, especially Pd and Pd alloys, have been intensely investigated to provide an alternative and economical way to obtain H with ultrahigh purity. To overcome the high cost of Pd, composite membrane structures that comprise a thin layer of Pd are utilized. However, it is a challenge to obtain a thin, dense, and uniform Pd layer on the support materials. This study investigates the parametric analysis of γ-AlO interlayer formation and the electroless Pd plating (Pd ELP) procedures on α-AlO supports with the aim to achieve a thin, uniform Pd surface without annealing. Adjustments in PEG/PVA concentration, dipping time, and heat treatment enabled creating a thin γ-AlO interlayer on α-AlO, minimizing pore size and density. Hydrazine concentration, heat treatment, and bath temperature were adjusted to optimize Pd ELP to achieve maximum yield from the plating bath and a dense, uniform surface without annealing. Pd/γ-AlO/α-AlO structures were analyzed using scanning electron microscopy, X-ray diffraction, and thermogravimetric analysis to observe the impact of varied parameters on surface structures. Optimized sample was compared to an annealed Pd/α-AlO prepared in accordance with literature methods and a Pd/graphite/α-AlO sample to validate the use of optimized ELP procedure and the γ-AlO interlayer. Results show that a dense and uniform 13 μm Pd coating was achieved on a γ-AlO-coated α-AlO support without annealing, using three fresh ELP baths. This was done using sequential hydrazine addition with a decreased concentration (1 M) into the ELP baths at 30 °C, and applying heat treatment at 120 °C between each fresh ELP bath.

摘要

致密金属膜,尤其是钯及钯合金,已受到广泛研究,旨在提供一种替代且经济的方法来获取超高纯度的氢气。为克服钯的高成本问题,人们采用了包含薄层钯的复合膜结构。然而,在支撑材料上获得薄、致密且均匀的钯层是一项挑战。本研究对在α -Al₂O₃载体上形成γ -Al₂O₃中间层及化学镀钯(Pd ELP)工艺进行参数分析,目的是在不进行退火的情况下获得薄而均匀的钯表面。通过调整聚乙二醇/聚乙烯醇(PEG/PVA)浓度、浸渍时间和热处理,能够在α -Al₂O₃上形成薄的γ -Al₂O₃中间层,使孔径和密度最小化。调整肼浓度、热处理和镀液温度以优化化学镀钯工艺,从而使镀液产量最大化,并在不进行退火的情况下获得致密、均匀的表面。使用扫描电子显微镜、X射线衍射和热重分析对Pd/γ -Al₂O₃/α -Al₂O₃结构进行分析,以观察不同参数对表面结构的影响。将优化后的样品与按照文献方法制备的退火Pd/α -Al₂O₃样品以及Pd/石墨/α -Al₂O₃样品进行比较,以验证优化后的化学镀钯工艺和γ -Al₂O₃中间层的用途。结果表明,在未退火的情况下,使用三个新鲜的化学镀钯镀液,在涂覆有γ -Al₂O₃的α -Al₂O₃载体上获得了致密且均匀的13μm钯涂层。具体做法是在30℃下向化学镀钯镀液中依次添加浓度降低(1M)的肼,并在每次使用新鲜镀液之间于120℃进行热处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c932/10965160/84ad631691ff/tjc-48-01-0195f1.jpg

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