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PSA USING SUPERIOR ADSORBENTS

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Literature Sited (1) Yang, R. T. Gas Separation by Adsorption Processes . Butterworth: Boston, 1987; reprinted (in paperback) by Imperial College Press: London and World Scientific Publishing Co.: River Edge, NJ, 1997. (2) Rege, S. U., and R. T. Yang, “Limits for Air Separation by Adsorption with LiX Zeolite”, Ind. Eng. Chem. Res., 36, 5358 (1997). (3) Barrer, R. M., Zeolites and Clay Minerals as Sorbents and Molecular Sieves, Academic Press, London, 1978. (4) Breck, D. W., Zeolite Molecular Sieves; R. E. Krieger Publishing, Malabar, FL, 1984. (5) Kuhl, G. H., “Crys tallization of Low-Silica Faujasite (SiO 2/Al2O3 2.0)”, Zeolites, 7, 451 (1987). (6) McKee, D. W., “Separation of an Oxygen-Nitrogen Mixture”, U.S. Patent 3,140,933, 1964. (7) Chao, C. C., “Process for Separating Nitrogen from Mixtures Thereof with Less Polar Substances”, US Patent 4,859,217 (1989). (8) Chao, C. C., J. D. Sherman, J. T. Mullhaupt, and C. M. Bolinger, “Mixed Ion- exhanged Zeolites and Processes for the Use Thereof in Gas Separations”, U. S. Patent 5,174,979 (1992). (9) Coe, C. G., J. F. Kirner, R. Pierantozzi, and T. R. White, “Nitrogen Adsorption with a Ca and/or Sr Exchanged Zeolite”, U. S. Patent 5,152,813 (1992). (10) Coe, C. G., in Access in Nanoporous Materials, T. J. Pinnavaia and M. F. Thorpe (Eds.), Plenum Press, New York, 1995 (p. 213). (11) Yang, R. T., “Recent Advances and New Horizons in Gas Adsorption - with a Focus on New Sorbents”, in Preprints Topical Conf. Separ. Sci. Tech. (Eds.: W. S. W. Ho and R. G. Luo) AIChE, New York (1997), p. 14. (12) Fitch, F. R., M. Bulow, and A. F. Ojo, “Adsorptive Separation of Nitrogen and Other Gases”, U. S. Patent 5,464,467 (1995). (13) Habgood, H. W., “Adsorptive and Gas Chromatographic Properties of Various Cationic Forms of Zeolite X”, Can. J. Chem., 42, 2340 (1964). (14) Huang, Y., “Adsorption in AgX and AgY Zeolites by Carbon Monoxide and Other Simple Molecules”, J. Catalysis, 32, 482 (1974). 70

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