Page 286 - Principles of Catalyst Development
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REFERENCES                                                       277
           240.  K.  Otto and M.  Shelef, The Adsorption of Nitric Oxide on Iron Oxides, f.  Catal.  18,  184
               ( 1970).
           241.  C.  R.  F.  Lund, J.  J.  Schorfheide,  and  J.  A.  Dumesic,  Magnetite  Surface  Area Titration
               Using  Nitric Oxide, 1.  Catal.  57,105  (1979).
           242.  J.  J.  F.  Scholten,  Metal  Surface  Area and  Metal  Dispersion  in  Catalysis,  Preparation  of
               Catalysis  /I  (B.  Delmon,  P.  Grange,  P.  Jacobs,  and G.  Ponce let,  eds.),  p.  685,  Elsevier,
               Amsterdam  (1979).
           243.  J.  E.  Benson and M.  Boudart, Hydrogen-Oxygen Titration Method for the Measurement
               of Supported  Platinum  Surface Area, 1.  Catal.  4,  704  (1965).
           244.  J.  J.  F. Scholten and J.  A.  Konvalinka,  Reaction of Nitrous Oxide with Copper Surfaces,
               Trans.  Faraday  Soc.  65,  2465  (1969).
           245.  J.  J.  F.  Scholten, J.  A.  Konvalinka, and  F.  W.  Beekman,  Reaction of Nitrous Oxide and
               Oxygen with Silver Surfaces, and Application to the Determination of Free-Silver Surface
               Area  of Catalysts, f.  Catal.  28,  209  () 973).
           246.  J.  T.  Richardson,  Dual-Functional  Activities  in  Nickel  Acid Catalysts, f.  Catal.  21,  122
               (1971).
           247.  T.  R.  Hughes  and  H.  M.  White,  A  Study  of the  Surface  Structure  of Decationized  Y
               Zeolite  by  Quantitative  Infrared  Spectroscopy. f.  Phys.  Chern.  71,  2192  (1967).
           248.  P.  E.  Eberly,  J.,  High-Temperature  Infrared  Spectroscopy  of  Pyridine  Adsorbed  on
               Faujasites, 1.  Phys.  Chern.  72,  1042  (1968).
           249.  H.  V.  Drushel  and  A.  L.  Sommers,  Catalyst  Acidity  Distribution  Using  Visible  and
               Fluorescent  Indicators,  Anal.  Chern.  38,  1723  (1966).
           250.  E.  V.  Ballou,  R.  T.  Barth, and  R.  A.  Flinn, 1.  Phys.  Chern.  65,  1639  (1961).
           251.  A.  K.  Galwey, Compensation  Effect  in  Heterogeneous Catalysis,  Advances in  Catalysis,
               Vol.  26 (0. D.  Eley, H.  Pines, and P.  B.  Weisz, eds.), p. 247, Academic, New York (1977).
           252.  L.  K.  Doraiswamy and  D.  G. Tajbl,  Laboratory Catalytic  Reactors,  Catal.  Rev.  10,  177
               ( 1974).
           253.  E.  G.  Christoffel,  Laboratory  Reactors  and  Heterogeneous  Catalytic  Processes,  Catal.
               Rev.  24,  149  (1982).
           254.  J.  M.  Berty, Testing Commercial Catalysts in Recycle, Reactors, Catal.  Rev. 20, 75  (1979).
           255.  T.  Furusawa,  M.  Suzuki, and J.  M.  Smith,  Rate  Parameters in  Heterogeneous Catalysts
               by  Pulse Techniques,  Catal.  Rev.  13,  43  (1976).
           256.  G.  A.  Somorjai,  Active  Sites  in  Heterogeneous  Catalysis,  Advances in  Catalysis,  Vol.  26
               (D.  D.  Eley,  H.  Pines,  and  P.  B.  Weisz,  eds.),  p.  2,  Academic,  New  York  (1977).
           257.  P.  J.  Denny and  M.  V.  Twigg,  Factors  Determining the  Life of Industrial  Heterogeneous
               Catalysts,  Catalyst  Deactivation  (B.  Delmon  and  G.  F.  Froment, eds.),  p.  577,  Elsevier,
               Amsterdam  (1980).
           258.  J.  B.  Butt,  Catalyst  Deactivation  and  Regeneration,  Catalysis,  Science  and  Technology,
               Vol.  6  (1.  R.  Anderson  and  M.  Boudart,  eds.),  p.  1,  Springer-Verlag,  New  York  (1984).
           259.  F.  S.  Kovarik  and  J.  B.  Butt,  Reactor Optimization  in  the  Presence  of Catalyst  Decay,
               Catal.  Ret'.  24,441  (1982).
           260.  J.  T.  Richardon, SNG Catalyst Technology,  Hydrocarbon  Processing,  December 1973,  p.
               91.
           261.  P.  B.  Venuto and  E.  T.  Habib, Jr.,  Fillid Catal)'tic Cracking  I\'itll  Zeolite Catalysts,  Marcel
               Dekker,  New  York  (1979).
           262.  W.  M.  H.  Sachtler and  R.  A.  van  Sant<'n,  Surface Composition  and  Selectivity of Alloy
               Catalysts,  Advances  in  ('(Jlaini"  Vol.  26  1 D.  D.  Eley,  H.  Pines,  and  P.  B.  Weisz,  eds.),
               p.  69,  Academic  Press,  New  York  119771.
           263.  B.  Delman and  P.  Grange, Solid State Chemical  Phenomena in Ageing and Deactivation
               of  Catalysts,  CatalvSI  [)eaclil'ation  1 B  Delman  and  G.  F.  Froment,  eds.),  p.  507,
               Elsevier,  Amsterdam  (1980).
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