Page 277 - Principles of Catalyst Development
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268 REFERENCES
18. G. P. Royer, Immobilized Enzymes Catalysis, Calal Rev. 22, 29 (19801.
19. E. G. Christoffel. Laboratory Reactors and Heterogeneous Catalytic Processes, Catal.
Rev. 24, 159 (1981)
20. H. L. Lee, HeterogelJeou.1 Reactor Design, Butterworths, New York (1984).
21. c. N. Satterfield, Alass Transfer ill Heterogelleous Catalysis, MIT Press, Boston (1970).
22. J. F. L.ePage and J. \1igucl, Determining Mechanical Properties of Industrial Catalysts,
Preparatioll ojiCatalysts I (B. Delmon, P.A. Jacobs and G. Poncelet, eds.), p. 39, Elsevier,
Amsterdam (1976),
23. A. Clark, The Theon' of Adsorption and Cata/l'.lis, Academic, New York (InO).
24. G. C. Bond, Catalvsis br Metals, Academic, New York (1962).
25. J. H. DeBoer, Adsorption Phenomena, Advances ill Cawlysis, Vol. 8 (W. G. Frankenburg,
V. I. Komarewsky and E. K. Rideall, eds.), p. 17, Academic, New York (1956).
26. I. Toyoshima and G. A. Somorjai, Heats and Adsorption of 0" H" CO, CO, and N,
on Polycrystalline and Single Crystal Transition Metal Surfaces, Cawl Rev. 19, 105 (1979).
n. J. J. Carberry, Cllemical alld Catalytic Reaction Ellgineerlng, McGraw-Hili, New York
( 1976).
28. M. Boudart, Kllletics of Chemical Processes, Prentice-Hall, Englewood Cliffs, New Jersey
( 1968)
29. K.J. Laidler, Kinetic Laws in Surface Catalysis, Catalysis, Vol. I (P. H. Emmet, ed.), p.
119, Reinhold, New York (1954).
30. 1\1. Boudart, Kinetics and Mechanism of Ammonia Synthesis, Cawl. Rev, 23, I (1981),
3 \. .I. M. Smith, Chemical Engineering Kinetics, McGraw-Hill, New York (1980).
32. A. Wheeler, Reaction Rates and SelectiVity in Catalyst Pores, Advances in Catalysis, Vol.
3, p. 250, Academic, New York (1950),
33. E. E. Gonzo and .I. C. Gottifredi, Rational Approximations of Effectiveness Factors and
General Diagnostic Criteria for Heat and Mass Transfer Limitations, Catal. Rev, 25, 119
( 1983).
34. J. W. Fulton, Selecting the Catalyst Configuration, Che/II. Eng. May 12,97 (1986).
35. A. V. Stiles, Catalyst Manufacture, Marcel Dekker, New York (1983).
36. M. W. Ranney, DeslIljurizarion oj Perrolellrn, Noyes Data, Park Ridge, New Jersey (1975).
37, J. R. H. Ross, Metal Catalysed Methanation and Steam Reforming, Catalysis, Vol. 7 (G.
C. Bond and G. Webb, eds.) p. I, The Royal Society of Chemistry, London (1985).
38. J. R. Rostrup-Nidsen, Catalytic Steam Reforming, Catalysis, Science and Technology,
Vol. 5 (J. R. Anderson and M. Boudart, eds.), p. 1, Springer-Verlag, New York (1984).
39. D. C. Puxley, I. J. Kitchener, C. Komodromos, and N. D. Parkyns, The Effect of
Preparation Method Upon the Structure, Stability and Metal/Support Interactions in
Nickel/ Alumina Catalysts, Preparation of Catalysts III (G. Poncelet, P. Grange, and P.
A. Jacobs, cds.), p. 237, Elsevier, Amsterdam (1983).
40. c. H. Bartholomew and J. R. Katzer, Sulfur Poisoning of Nickel in CO Hydrogenation,
Catalyst Deactivation (B. Delmonand G. F. Froment, eds.), p. 375, Elsevier, Amsterdam
(1981).
41. C. H. Bartholomew, Carbon Deposition in Steam Reforming and Methanation, Cawl.
Ret·. 24, 67 (1982).
42. D. L. Trimm, The Formation and Removal of Coke from Nickel Catalysts, CataI. Rev.
16, ISS (1977).
43. W. B. Innes, Catalyst Carriers, Promoters, Accelerators, Poisons and Inhibitors, Catalysis,
Vol. 1 (P. B. Emmett, ed.l, p. 245, Reinhold, New York (1954).
44. G. C. Bond, Catalysis by Metals, Academic, New York (1962).
45. 0. V. Krylov, Catalysis by Non-Metals, Academic, New York (1970).