By A Doukelis, K Panopoulos, A Koumanakos, E Kakaras

Due to their extraordinary hydrogen selectivity, palladium membranes have attracted large R&D curiosity. they seem to be a strength step forward expertise for hydrogen creation and still have promising functions within the components of thermochemical biorefining. This booklet summarises key examine in palladium membrane applied sciences, with specific specialize in the scale-up demanding situations. After an introductory bankruptcy, half one experiences the fabrication of palladium membranes. half then specializes in palladium membrane module and reactor layout. the ultimate a part of the ebook stories the operation of palladium membranes for synthesis gas/hydrogen creation, carbon trap and different purposes.

• overview of manufacture and layout concerns for palladium membranes • dialogue of the purposes of palladium membrane expertise, together with sunlight steam reforming, IGCC crops, NGCC vegetation, CHP crops and hydrogen creation • Examples of the know-how in operation

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Extra resources for Palladium Membrane Technology for Hydrogen Production, Carbon Capture and Other Applications Principles, Energy Production and Other Applications

Example text

This chapter discusses state-of-the-art of electroless plating, the mechanisms behind deposition, its applications in other areas, but also its restrictions. Additionally, an overview of other deposition techniques is presented, with their benefits and restrictions, and compared with those associated with electroless plating. 2 Electroless plating This chapter deals with the theory of electroless plating as deposition technology and the reported metals that have been deposited, using this wet-chemical technique.

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L. Wang, R. Yoshiie and S. Uemiya (2007), Fabrication of novel Pd-Ag-Ru/Al2O3 ternary alloy composite membrane with remarkably enhanced H2 permeability, Journal of Membrane Science, 306, 1–7. 62. D. B. L. Shanahan (2005), Hydrogen permeation measurements of partially internally oxidized Pd-Al alloys in the presence and absence of CO, Journal of Membrane Science, 253, 165–173. 63. P. H. B. D. J. Gellman (2010), Inhibition of hydrogen transport through Pd and Pd47Cu53 membranes by H2S at 350ºC, Journal of Membrane Science, 349, 380–384.

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