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- W2048177562 abstract "Thin Pd−Ag alloy composite membranes were simultaneously deposited on commercial asymmetric porous stainless steel (APSS) tubes, using a combined method of electroless plating and electroplating under mild conditions. The X-ray diffraction patterns proved that the Pd−Ag alloy structure was formed at room temperature. The permeation behavior was investigated in detail, revealing that the hydrogen permeation flux, which was as high as 0.28 mol/(m2 s), and the infinite hydrogen selectivity versus argon were achieved at a temperature of 773 K with a pressure difference of 100 kPa. The good membrane stability was proven by the temperature-changing cycles (11) and the gas-exchanging cycles (20). Electron probe microanalysis indicated that the Pd−Ag alloy composite membranes had a stable structure and a homogeneous Pd−Ag alloy layer. In addition, the membrane reactor for methane steam reforming was constructed and the reaction performance was tested. The methane conversion, which was as high as 80.72%, was achie..." @default.
- W2048177562 created "2016-06-24" @default.
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- W2048177562 date "2005-12-15" @default.
- W2048177562 modified "2023-09-25" @default.
- W2048177562 title "Simultaneously Depositing Pd−Ag Thin Membrane on Asymmetric Porous Stainless Steel Tube and Application To Produce Hydrogen from Steam Reforming of Methane" @default.
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- W2048177562 doi "https://doi.org/10.1021/ie050935u" @default.
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