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[9] R. Bounaceur, N. Lape, D. Roizard, C. Vallieres, E. Favre, Membrane processes for post-combustion carbon dioxide capture: A parametric study, Energy 31 (2005) 2556-2570. [10] K.S. Walton, M.D. LeVan, Consistency of energy and material balances for bidis- perse particles in fixed-bed adsorption and related applications, Industrial & Engineering Chemistry Research, 42 (26) (2003) 6938-6948. [11] R.B. Bird, W.E. Stewart, E.N. Lightfoot, Transport Phenomena, 2nd ed.; John Wiley and Sons Inc: New York, 2002. [12] S.M. Taqvi, W.S. Appel, M.D. LeVan, Coadsorption of organic compounds and water vapor on BPL activated carbon. 4. Methanol, ethanol, propanol, butanol, and modeling, Industrial & Engineering Chemistry Research, 38 (1) (1999) 240- 250. [13] 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. 49PDF Image | TEMPERATURE SWING ADSORPTION COMPRESSION AND MEMBRANE SEPARATIONS
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