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Transport phenomena for chemical rea...
~
Belfiore, Laurence A.
Transport phenomena for chemical reactor design
レコード種別:
コンピュータ・メディア : 単行資料
タイトル / 著者:
Transport phenomena for chemical reactor design/ Laurence A. Belfiore.
著者:
Belfiore, Laurence A.
出版された:
Hoboken, N.J. :J. Wiley,�003.
記述:
1 online resource (xxv, 884 pages)
主題:
Transport theory. -
電子資源:
Click here for online access to this book (查閱全文) (EBSCO eBook)
国際標準図書番号 (ISBN):
0471265586 (electronic bk.)
国際標準図書番号 (ISBN):
9780471265580 (electronic bk.)
国際標準図書番号 (ISBN):
0471471623 (electronic bk.)
国際標準図書番号 (ISBN):
9780471471622 (electronic bk.)
Transport phenomena for chemical reactor design
Belfiore, Laurence A.
Transport phenomena for chemical reactor design
[electronic resource] /Laurence A. Belfiore. - Hoboken, N.J. :J. Wiley,�003. - 1 online resource (xxv, 884 pages)
Includes bibliographical references (pages 861-864) and index.
Part I. Elementary Topics in Chemical Reactor Design -- Multiple Chemical Reactions in Plug Flow Tubular Reactors and Continuous Stirred Tank Reactors -- Start Up Behavior of a Series Configuration of Continuous Stirred Tank Reactors -- Adiabatic Plug-Flow Tubular Reactor That Produces Methanol Reversibly in the Gas Phase from Carbon Monoxide and Hydrogen -- Coupled Heat and Mass Transfer in Nonisothermal Liquid-Phase Tubular Reactors with Strongly Exothermic Chemical Reactions -- Multiple Stationary States in Continuous Stirred Tank Reactors -- Coupled Heat and Mass Transfer with Chemical Reaction in Batch Reactors -- Total Pressure Method of Reaction-Rate Data Analysis -- Part II. Transport Phenomena: Fundamentals and Applications -- Applications of the Equations of Change in Fluid Dynamics -- Derivation of the Mass Transfer Equation -- Dimensional Analysis of the Mass Transfer Equation -- Laminar Boundary Layer Mass Transfer around Solid Spheres, Gas Bubbles, and Other Submerged Objects -- Dimensional Analysis of the Equations of Change for Fluid Dynamics Within the Mass Transfer Boundary Layer -- Diffusion and Chemical Reaction Across Spherical Gas-Liquid Interfaces -- Part III. Kinetics and Elementary Surface Science -- Kinetic Mechanisms and Rate Expressions for Heterogeneous Surface-Catalyzed Chemical Reactions.
Use copy
Electronic reproduction.
[S.l.] :
HathiTrust Digital Library,
2010.
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.
http://purl.oclc.org/DLF/benchrepro0212
ISBN: 0471265586 (electronic bk.)
Standard No.: 10.1002/0471471623doiSubjects--Topical Terms:
147401
Transport theory.
Index Terms--Genre/Form:
172687
Electronic books.
LC Class. No.: TP156.T7 / B45 2003eb
Dewey Class. No.: 660/.2832
Transport phenomena for chemical reactor design
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Part IV. Mass Transfer and Chemical Reaction in Isothermal Catalytic Pellets -- Diffusion and Heterogeneous Chemical Reaction in Isothermal Catalytic Pellets -- Complete Analytical Solutions for Diffusion and Zeroth-Order Chemical Reactions in Isothermal Catalytic Pellets -- Complete Analytical Solutions for Diffusion and First-Order Chemical Reactions in Isothermal Catalytic Pellets -- Numerical Solutions for Diffusion and nth-Order Chemical Reactions in Isothermal Catalytic Pellets -- Numerical Solutions for Diffusion and Hougen-Watson Chemical Kinetics in Isothermal Catalytic Pellets -- Internal Mass Transfer Limitations in Isothermal Catalytic Pellets -- Diffusion Coefficients and Damkohler Numbers Within the Internal Pores of Catalytic Pellets -- Part V. Isothermal Chemical Reactor Design -- Isothermal Design of Heterogeneous Packed Catalytic Reactors -- Heterogeneous Catalytic Reactors with Metal Catalyst Coated on the Inner Walls of the Flow Channels -- Designing a Multicomponent Isothermal Gas-Liquid CSTR for the Chlorination of Benzene to Produce Monochlorobenzene -- Part VI. Thermodynamics and Nonisothermal Reactor Design -- Classical Irreversible Thermodynamics of Multicomponent Mixtures -- Molecular Flux of Thermal Energy in Binary and Multicomponent Mixtures Via the Formalism of Nonequilibrium Thermodynamics -- Thermal Energy Balance in Multicomponent Mixtures and Nonisothermal Effectiveness Factors Via Coupled Heat and Mass Transfer in Porous Catalysts -- Statistical Thermodynamics of Ideal Gases -- Thermodynamic Stability Criteria for Single-Phase Homogeneous Mixtures -- Coupled Heat and Mass Transfer in Packed Catalytic Tubular Reactors That Account for External Transport Limitations.
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