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Research and Development

Tritium Pumping Based on Asymmetric Permeation

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Pages 2285-2289 | Published online: 10 Aug 2017

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Read on this site (1)

A.R.A. Haasz, K.T. Aust, W.T. Shmayda & G. Palumbo. (1995) Hydrogen Transport in Nickel. Fusion Technology 28:3P2, pages 1169-1174.
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Articles from other publishers (7)

Chao Li, J. Douglas Way, Thomas F. Fuerst & Colin A. Wolden. (2023) Low temperature hydrogen superpermeation in vanadium composite metal foil pumps. Nuclear Materials and Energy 37, pages 101529.
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Chao Li, Adam J. Job, Thomas F. Fuerst, Masashi Shimada, J. Douglas Way & Colin A. Wolden. (2023) Low temperature hydrogen plasma permeation in palladium and its alloys for fuel recycling in fusion systems. Journal of Nuclear Materials 582, pages 154484.
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Mostafa El‐Shafie. (2021) Hydrogen separation using palladium‐based membranes: Assessment of H 2 separation in a catalytic plasma membrane reactor . International Journal of Energy Research 46:3, pages 3572-3587.
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B.J. Peters, S. Hanke & C. Day. (2018) Metal Foil Pump performance aspects in view of the implementation of Direct Internal Recycling for future fusion fuel cycles. Fusion Engineering and Design 136, pages 1467-1471.
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M.D. Sharpe, C. Fagan, W.T. Shmayda & W.U. Schröder. (2018) Partitioning of tritium between surface and bulk of 316 stainless steel at room temperature. Fusion Engineering and Design 130, pages 76-79.
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P. L. Andrew & A. A. Haasz. (1991) Hydrogen permeation through copper-coated palladium. Journal of Applied Physics 70:7, pages 3600-3604.
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P.L. Andrew & A.A. Haasz. (1991) Effect of thin copper and palladium films on hydrogen permeation through iron. Journal of the Less Common Metals 172-174, pages 732-739.
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