Page 290 - Adsorbents fundamentals and applications
P. 290

REFERENCES   275

            Dresselhaus, M. S., Dresselhaus, G., and Eklund, P. C. (1996) Science of Fullerenes and
              Carbon Nanotubes. Academic Press, San Diego, CA.
            Dresselhaus, M. S., Dresselhaus, G., Suihara, K., Sapin, I. L., and Goldberg, H. A. (1988)
              Graphite Fibers and Filaments. Springer, Berlin, Germany, and New York, NY.
            Dresselhaus, M. S. and Endo, M. (2001) Carbon Nanotubes. (M. S., Dresselhaus,
              G., Dresselhaus, and Ph. Avouris, eds.). Springer, Berlin, Germany, and New York,
              NY, pp. 10–28.
            Drezdon, M. A. (1988) Inorg. Chem. 27, 4628.
            Engwall, E. and Ma, Y. H. (2002) Fundamentals of Adsorption 7. (K. Kaneko, H. Kanoh,
              and Y. Hanzawa, eds.). IK International, Chiba City, Japan, p. 586.
            Eswaramoorthy, M., Sen, R., and Rao, C. N. R. (1999) Chem. Phys. Lett. 304, 207.
            Faust, S. D. and Aly, O. M. (1987) Adsorption Process for Water Treatment. Butter-
              worths, Boston, MA.
            Figueras, F. (1988) Catal. Rev. Sci. Eng. 30, 457.
            Figueras, F., Mattrod-Bashi, A., Fetter, G., Thrierr, A., and Zanchetta, J. V. (1989) J.
              Catal. 119, 91.
            Frechet, J. M. J. and Farrall, M. J. (1977) Functionalization of crosslinked polystyrene
              resins by chemical modification: a review. In Chemistry and Properties of Crosslinked
              Polymers. (S. S. Labana, ed.). Academic Press, San Diego, CA.
            Fripiat, J. J. (1987) Catal. Today 2, 281.
            Fripiat, J. J. (1982) Developments in Sedimentology: Advanced Techniques for Clay Min-
              eral Analysis. (J. J. Fridat, ed.). Elsevier, New York, NY, Vol. 34.
            Fryer, J. R. (1979) Chemical Applications of Transmission Electron Microscopy. Aca-
              demic Press, New York, NY.
            Garcia, A. A. and King, C. J. (1989) Ind. Eng. Chem. Res. 28, 204.
            Gatica, S. M., Cole, M. W., Hartman, J. M., and Crespi, V. H. (2000) Phys. Rev. B 62,
              9989.
            Gil, A., Gandia, L. M., and Vicenti, M. A. (2000) Catal. Rev., Sci. Eng. 42, 145.
            Gil, A. and Montes, M. (1994) Langmuir 10, 291.
            Grim, R. E. (1968) Clay Mineralogy, 2nd Ed. McGraw-Hill, New York, NY.
            Guo, T., Nikolaev, P., Thess, A., Colbert, D. T., and Smalley, R. E. (1995) Chem. Phys.
              Lett. 243, 49.
            Harstenstein, H. U. (1993) Proceedings of International Specialty Conference, VIP-32;
              Municipal Waste Combustion Conference, Williamsburg, VA, March; Air and Waste
              Management Association: Pittsburgh, PA, 1993, p. 87.
            Haufler, R. E., Conceicao, J., Chibanti, P. F., Chai, Y., Byrne, N. E., Flanagan, S., Haley,
              M. M., O’Brien, S. C., Pan, C., Xiao, Z., Billups, W. E., Ciufolini, M. A., Hauge,
              R. H., Margrave, J. L., Wilson, L. J., Curl, R. F., and Smalley, R. E. (1990) J. Phys.
              Chem. 94, 8634.
            Hernadi, K., Fonseca, A., Nagy, J. B., Bernaerts, D., Fudala, A., and Lucas, A. A. (1996)
              Zeolites 17, 416.
            Hilbert, M. and Lange, N. (1958) Z. Kristallogr. 111, 24.
            Hollis, O. L. (1966) Anal. Chem. 38, 309.
            Hutson, N. D., Gualdoni, D. J., and Yang, R. T. (1998) Chem. Mater. 10, 3707.
            Iijima, S. (1991) Nature 354, 56.
   285   286   287   288   289   290   291   292   293   294   295