Page 66 - Adsorbents fundamentals and applications
P. 66

REFERENCES   51

            Crittenden, B.  and  Thomas, W. J.  (1998)  Adsorption Technology and Design.
              Butterworth-Heinemann, Oxford, UK.
            Cho, S. H. (2001) Korea Institute of Energy Research, Taejon, Korea, personal commu-
              nication.
            Chou, C. T., Peng, F. S., and Hsia, L. H. (1998) Fundamentals of Adsorption (F. Meunier,
              ed.). Elsevier, Amsterdam, p. 781.
            Chue, K. T., Kim, J. N., Yoo, Y. J., Cho, S. H., and Yang, R. T. (1995) Ind. Eng. Chem.
              Res. 34, 591.
            Chue, K. T., Bum, H. T., Kim, D. S., and Cho, S. H. (2000) Adsorption Science and
              Technology. (D. D. Do, ed.). World Scientific Publishers, River Ridge, NJ, p. 159.
            Darken, L. (1948) Trans. AIME 174, 184.
            Davis, M. M. and LeVan, M. D. (1989) Ind. Eng. Chem. Res. 28, 778.
            Ding, Y. and Alapy, E. (2000) Chem. Eng. Sci. 55, 3461.
            Do, D. D. (1998) Adsorption Analysis: Equilibrium and Kinetics. Imperial College Press,
              London.
            Doong, S. J. and Yang, R. T. (1988) Ind. Eng. Chem. Res. 27, 630.
            Dubinin, M. M. (1960) Chem. Rev. 60, 235.
            Fuderer, A. and Rudelstorfer, E. U.S. Patent 3,986,849 (1976), to Union Carbide Corpo-
              ration.
            Gaffney, T. R., Kirner, J. F., Kumar, R., Maliszewskyj, R. J., and Schmidt, W. P. O 2
              VSA process with low O 2 capacity adsorbents. U.S. Patent 5,266,102 (1993), to Air
              Products and Chemicals, Inc.
            Grant, R. J. and Manes, M. (1966) Ind. Eng. Chem. Fundam. 5, 490.
            Guerin de Montgareuil, P. and Domine, D. U.S. Patent 3,155,468 (1964), to Soci&∼
              L’Air Liquide, Paris.
            Haase, R. and Siry, M. (1968) Z. Phys. Chem. (Frankfurt) 57, 56.
            Habgood, H. W. (1958) Can. J. Chem. 36, 1384.
            Heinze, G. Belgian Patent 613,267 (1962), to Farbenfabriken Bayer A.G.
            Higashi, K., Ito, H., and Oishi, J. (1963) J. Atomic Energy Soc. Japan 5, 846.
            Hufton, J. R., Mayorga, S., and Sircar, S. (1999) AIChE J. 45, 248.
            Hufton, J. R., Mayorga, S., and Sircar, S. (1999) AIChE J. 45, 248.
            Humphrey, J. L. and Keller, II, G. E. (1997) Separation Process Technology.McGraw
              Hill, New York.
            Hutson, N. D., Rege, S. U., and Yang, R. T. (1999) AIChE J. 45, 724.
            Hutson, N. D. and Yang, R. T. (1997) Adsorption 3, 189.
            Jaroniec, M. and Madey, R. (1988) Physical Adsorption on Heterogeneous Solids.Else-
              vier, Amsterdam.
            Kapoor, A., Ritter, J. A., and Yang, R. T. (1989a) Langmuir 5, 1118.
            Kapoor, A. and Yang, R. T. (1988) Gas Separ. Purification 3, 187.
            Kapoor, A., Yang, R. T., and Wong, C. (1989b) Surface Diffusion, Catal. Rev.- Sci. Eng.
              31, 129.
            Karger, G. and Ruthven, D. M. (1992) Diffusion in Zeolites and Other Microporous Mate-
              rials. Wiley, New York.
            Kauzmann, W. (1966) Kinetic Theory of Gases. Benjamin, New York.
   61   62   63   64   65   66   67   68   69   70   71