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Chemistry, 01.04.2021 22:10 shouyuanroh8462

ltra-pure hydrogen is required in applications ranging from the manufacturing of semiconductors to powering fuel cells. The crystalline structure of palladium allows only the transfer of atomic hydrogen (H) through its thickness, and therefore palladium membranes are used to ļ¬lter hydrogen from contaminated streams containing mixtures of hydrogen and other gases. Hydrogen molecules (H 2 ) are ļ¬rst adsorbed onto the palladiumā€™s surface and are then dissociated into atoms (H), which subsequently diffuse through the metal. The H atoms recombine on the opposite side of the membrane, forming pure H 2 . The surface concentration of H takes the form C H Ļ­ K 0.5 s p H , where K s Ļ· 1.4 kmol/m 3 ā… bar 0.5 is known as Sievertā€™s constant. 2 Consider an industrial hydrogen puriļ¬er consisting of an array of palladium tubes with one tube end connected to a collector plenum and the other end closed. The tube bank is inserted into a shell. Impure H 2 at T Ļ­ 600 K, p Ļ­ 15 bars, x H Ļ­ 0.85 is introduced into the shell while pure H 2 2 at p Ļ­ 6 bars, T Ļ­ 600 K is extracted through the tubes. Determine the production rate of pure hydrogen (kg/h) for N Ļ­ 100 tubes which are of inside diameter D i Ļ­ 1.6 mm, wall thickness t Ļ­ 75 m, and length L Ļ­ 80 mm. The mass diffusivity of hydrogen (H) in palladium at 600 K is approximately D

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