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Catalytic processes under unsteady-state conditions

Author: I︠U︡ Sh Matros
Publisher: Amsterdam ; New York : Elsevier ; New York, NY, U.S.A. : Distributors for the U.S. and Canada, Elsevier Science Pub. Co., 1989.
Series: Studies in surface science and catalysis, 43.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This book deals with catalytic processes under forced non-steady-state conditions. It demonstrates, both theoretically and practically, that forced non-steady-state processes are highly efficient compared with steady-state processes, and illustrates this with a wealth of practical examples. The first part of the book describes the theoretical and experimental basis of efficient processes, mathematical models of  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Matros, I︠U︡. Sh. (I︠U︡riĭ Shaevich), 1937-
Catalytic processes under unsteady-state conditions.
Amsterdam ; New York : Elsevier ; New York, NY, U.S.A. : Distributors for the U.S. and Canada, Elsevier Science Pub. Co., 1989
(DLC) 88029348
(OCoLC)18590045
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: I︠U︡ Sh Matros
ISBN: 9780444871169 0444871160 9780080960760 0080960766
OCLC Number: 428094671
Notes: Translation of: Kataliticheskie prot︠s︡essy v nestat︠s︡ionarnykh uslovii︠a︡kh.
Reproduction Notes: Electronic reproduction. [S.l.] : HathiTrust Digital Library, 2010. MiAaHDL
Description: 1 online resource (xiv, 403 pages) : illustrations.
Details: Master and use copy. Digital master created according to Benchmark for Faithful Digital Reproductions of Monographs and Serials, Version 1. Digital Library Federation, December 2002.
Contents: 1. Reaction Performance in the Catalyst Unsteady State. 2. Dynamic Properties of Contact Apparatus. 3. Reversal of the Reaction Mixture Flow in the Fixed Catalyst Bed. 4. Reaction Control by Means of Variation of the Inlet Parameters. 5. Performance of Catalytic Processes in the Formation and Propagation of a Heat Wave. 6. Purification of Effluent Industrial Gases from Organic Substances and Carbon Monoxide. 7. Non-Steady-State Method for Sulphur Dioxide Oxidation in Sulphuric Acid Production. 8. Production of High-Potency Heat from Slightly Concentrated Gases in the Non-Steady-State Regime. 9. Ammonia, Methanol and Sulphur Production Under Non-Steady-State Conditions. Future Prospects. Index.
Series Title: Studies in surface science and catalysis, 43.
Other Titles: Kataliticheskie prot︠s︡essy v nestat︠s︡ionarnykh uslovii︠a︡kh.
Responsibility: Yu. Sh. Matros.

Abstract:

This book deals with catalytic processes under forced non-steady-state conditions. It demonstrates, both theoretically and practically, that forced non-steady-state processes are highly efficient compared with steady-state processes, and illustrates this with a wealth of practical examples. The first part of the book describes the theoretical and experimental basis of efficient processes, mathematical models of non-steady-state processes in reactors, influence of a non-steady-state catalyst surface, problems of optimization, the theory of a heat front in the fixed catalyst bed, and methods to create efficient cyclic regimes. The second part considers the following processes: sulphur dioxide oxidation in sulphuric acid production, cleaning of effluent gases from toxic impurities, production of high-potency heat, ammonia and methanol synthesis etc. The book will appeal to many readers: chemical engineers (especially in the field of mathematical modelling of reactors with a fixed catalyst bed); personnel of chemical plants and machine-manufacturing companies dealing with maintenance and installation of catalytic reactors; specialists in detoxification of the effluents from organic admixtures and carbon monoxide; students of technical colleges and universities.

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