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Molecular Transport and Reaction in Zeolites: Design and Application of Shape Selective Catalysis
 
 
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Molecular Transport and Reaction in Zeolites: Design and Application of Shape Selective Catalysis [Hardcover]

N. Y. Chen (Author), Thomas F. Degnan Jr. (Author), C. Morris Smith (Author)

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Book Description

0471185485 978-0471185482 October 13, 1994 1
This book examines the molecular dynamics that occur within zeolites. Our understanding of how these marvelous catalysts work has been greatly enhanced by the advent ot new tools such as NMR, scanning-transmission-electron microscopy, and sophisticated computer modelling. By combining recent findings and newly developed models with classical developments in the theory of diffusion, this book provides a complete picture of the physical chemistry of hydrocarbon transformation in zeolites. It should be an excellent guide to those involved in catalyst design.

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Provides a fair but critical assessment and comprehensive treatment of diffusion in zeolites by combining experiments and theories with practical applications of zeolite materials. Molecular Transport and Reaction in Zeolites also examines the relationship between diffusion and chemical reactions--highlighting apparent discrepancies, offers a listing of key features that should be considered in the design and use of zeolite catalysts, and explains why uncertainties of current knowledge on diffusion exists.

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Inside This Book (learn more)
First Sentence:
How do molecules move inside a zeolite and how does the intracrystalline channel network of a zeolite influence the movement and the reaction pathway of organic molecules are necessarily important questions in the design and application of shape selective catalysts. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
oxygen ring zeolites, uptake diffusivity, oxygen ring channels, zeolite diffusivity, oxygen ring systems, medium pore zeolites, corrected diffusivity, zeolitic diffusion, configurational regime, intracrystalline diffusivity, zeolite crystal size, configurational diffusion, site residence times, intracrystalline diffusion, ethylbenzene conversion, shape selective reactions, xylene loss, toluene disproportionation, intracrystalline space, transition state selectivity, small pore zeolites, sorbate molecules, large pore zeolites, dewaxing process, coking rate
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Zeolite Conf, Faraday Trans, New York, John Wiley, Carbon Number Figure, Faraday Disc, National Meeting, Oil Gas, Faraday Soc, Zeolite Molecular Sieves, United States, Colloid Interface Sci, Linde Type, San Diego, Cohen de Lara, Congress Catal, European Patent, Monte Carlo, New Orleans, Academic Press, Base Base Base, Coal Chem, Hydrocarbon Processing, Marcel Dekker, New Zealand
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