Table of contents for Deactivation and testing of hydrocarbon-processing catalysts / Paul O'Connor, Toru Takatsuka, Geoffrey L. Woolery, [editors].
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Philosophical Overview of Testing, P. O'Connor, G.L. Woolery, and T. Takatsuka
Advantages, Possibilities, and Limitations of Small-Scale Testing of Catalysts for Fixed-Bed Processes, S.T. Sie
Evaluating Pore Structure and Morphology of Hydrocarbon-Conversion Catalysts, R. Mann, K. Khalaf, and A. Al-Lamy
Deactivation of Zeolite Catalysts by Coke, T. Masuda and K. Hashimoto
Modes of Coking and Deactivation of Acid Zeolite Catalysts, M. Guisnet, P. Magnoux, and K. Moljord
Catalyst Coking, Activation, and Deactivation, P.A. Sermon, M.S.W. Vong, and M. Matheson
NMR Techniques for Studying the Coking of Zeolite-Based Catalysts, J.L. Bonardet, M.C. Barrage, and J. Fraissard
Characterization of Fluid Catalytic Cracking Catalyst Coke by ]1]3C NMR and Mass Spectrometry, B.J. McGhee, J.M. Andresen, C.E. Snape, R. Hughes, C.L. Koon, and G. Hutchings
Catalyst Decay as a Side Reaction of the Chain Processes of Catalytic Cracking, B.W. Wojciechowski and N.M. Rice
Catalyst Deactivation in Fluid Catalytic Cracking: A Review of Mechanisms and Testing Methods, P. O'Connor, E. Brevoord, A.C. Pouwels, and H.N.J. Wijngaards
Sodium Deactivation of Fluid Catalytic Cracking Catalyst, X. Zhao and W.-C. Cheng
Contaminant-Metal Deactivation and Metal-Dehydrogenation Effects During Cyclic Propylene Steaming of Fluid Catalytic Cracking Catalysts, L.T. Boock, T.F. Petti, and J.A. Rudesill
Catalyst Deactivation in Adiabatic Prereforming: Experimental Methods and Models for Prediction of Performance, T.S. Christensen and J. Rostrup-Nielsen
Mechanism of Deactivation in Reforming Catalysts at Start of Run, Y. Liu, G. Pan, and J. Yang
Catalyst Deactivation in Commercial Residue Hydrodesulfurization, H. Koyama, E. Nagai, and H. Kumagai
Deactivation of Light Naphtha Aromatization Catalyst, S. Fukase, N. Igarashi, K. Aimoto, and K. Kato
Effect of Process Conditions and Catalyst Properties on Catalyst Deactivation in Residue Hydroprocessing, M. Absi-Halabi and A. Stanislaus
Catalyst Deactivation in Hydrodemetallization, J.P. Janssens, A.D. van Langeveld, S.T. Sie, and J.A. Moulijn
Activity and Coking Rate of Catalysts Deactivated by Fast-Coking Species Added to the Feed, D.B. Dadyburjor, Z. Liu, S. Matoba, S. Osanai, and T. Shirooka
Pilot Reactor Testing of the Effect of Naphtha Boiling Point in Catalytic Reforming, K. Moljord, K. Grande, I. Tanem, and A. Holmen
Vanadium Mobility in Fluid Catalytic Cracking, R.F. Wormsbecher, W.-C. Cheng, G. Kim, and R. H. Harding
Improved Methods for Testing and Assessing Deactivation from Vanadium Interaction with Fluid Catalytic Cracking Catalyst, B. Lerner and M. Deeba
Riser Simulator: Testing of Adsorption Effects, J. Pruski, A. Pekediz, and H. de Lasa
Development of a Bench-Scale Fluid Catalytic Cracking Microriser, M.P. Helmsing, M. Makkee, and J.A. Moulijn
Evaluation of Coke Selectivity of Fluid Catalytic Cracking Catalysts, E. Brevoord, A.C. Pouwels, F.P.P. Olthof, H.N.J. Wijngaards, and P. O'Connor
Correlation of Catalyst Performance Between Laboratory Tests and Commercial Units for Hydrotreating Residual Oil, Y. Miyauchi, T. Hashiguchi, N. Kimbara, and K. Fujita
Life Testing of Light Hydrocarbon Aromatization Catalysts, K. Hirabayashi, F. Igarashi, and T. Kondou
Performance Testing of Hydroconversion Catalysts, W.H.J. Stork
Development of a Test Procedure To Evaluate Fluid Catalytic Cracking Catalyst Regenerability, V.L.N. Murthy, S. Debnath, M. Rama Rao, S.K. Ray, A.K. Das, and S. Ghosh
A Catalyst Deactivation Model for Residual Oil Hydrodesulfurization and Application to Deep Hydrodesulfurization of Diesel Fuel, T. Takatsuka, Y. Wada, and S. Inoue
Modeling Catalytic Deactivation of Benzene Hydrogenation, P.F. Meier and M.M. Johnson
Library of Congress subject headings for this publication:
Petroleum -- Refining -- Congresses.
Catalysts -- Congresses.
Catalyst poisoning -- Congresses.