TEMPERATURE SWING ADSORPTION COMPRESSION AND MEMBRANE SEPARATIONS

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TEMPERATURE SWING ADSORPTION COMPRESSION AND MEMBRANE SEPARATIONS ( temperature-swing-adsorption-compression-and-membrane-separa )

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References [1] B.S. Garbow, K.E. Hillstrom, J. Jorge, Minpack Project, Argonne National Lab- oratory, March 1980. [2] V. Gnielinski, New equations for heat and mass transfer in turbulent pipe and channel flow, International Chemical Engineering, 16 (1976) 359. [3] M. Khandelwal, M.M. Mench, Direct measurement of through-plane thermal conductivity and contact resistance in fuel cell membranes, Journal of Power Sources, 161 (2006) 1106-1115. [4] L. Mulloth, M. Varghese, B. Luna, J. Hogan, M.D. LeVan, J.R. Moate, Devel- opment of a low-power CO2 removal and compression system for closed-loop air revitalization in future spacecraft, SAE International, Paper 2005-01-2944 (2005) 1-8. [5] M.S. Rosen, L.M. Mulloth, D.L. Affleck, Y. Wang, M.D. LeVan, Development and testing of a temperature-swing adsorption compressor for carbon dioxide in closed-loop air revitalization systems, SAE International, Paper 2005-01-2941 (2005) 1-6. [6] R.K. Shah, A.L. London, Supplement 1 to Advances in Heat Transfer; Academic Press: New York, 1978. [7] T.E. Springer, T.A. Zawodzinski, S. Gottesfeld, Polymer electrolyte fuel cell model, Journal of the Electrochemical Society, 138 (1991) 2334-2342. [8] X. Ye, M.D. LeVan, Water transport properties of Nafion membranes Part I. Single-tube membrane module for air drying, Journal of Membrane Science, 221 (2003) 147-161. 128

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