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  • 1
    Online Resource
    Online Resource
    San Diego : Academic Press
    UID:
    b3kat_BV035413909
    Format: 1 Online-Ressource (xiii, 452 Seiten) , Illustrationen
    Edition: Online_Ausgabe Boulder, Colo NetLibrary 2003 E-Books von NetLibrary Sonstige Standardnummer des Gesamttitels: 22382847
    ISBN: 0585470952
    Series Statement: Process systems engineering series v. 5
    Note: Includes bibliographical references and indexes
    Additional Edition: Reproduktion von Ranade, Vivek V. Computational flow modeling for chemical reactor engineering 2002
    Language: English
    Subjects: Physics
    RVK:
    Keywords: Chemischer Reaktor ; Strömungsmechanik ; Computersimulation
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  • 2
    Online Resource
    Online Resource
    San Diego : Academic Press
    UID:
    gbv_086232614
    Format: xiii, 452 p , ill. (some col.)
    Edition: Boulder, Colo NetLibrary 2003 Online-Ressource E-Books von NetLibrary
    ISBN: 0585470952
    Series Statement: Process systems engineering series v. 5
    Note: Includes bibliographical references and indexes , Electronic reproduction, Boulder, Colo : NetLibrary, 2003
    Language: English
    Keywords: Chemischer Reaktor ; Strömungsmechanik ; Computersimulation ; Chemischer Reaktor ; Strömungsmechanik ; Computersimulation ; Electronic books. ; Electronic books.
    URL: Volltext  (Deutschlandweit zugänglich)
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  • 3
    Online Resource
    Online Resource
    San Diego :Academic Press,
    UID:
    almahu_9949697880302882
    Format: 1 online resource (475 p.)
    ISBN: 1-281-51422-5 , 9786611514228 , 0-08-050229-6 , 0-585-47095-2
    Series Statement: Process systems engineering series ; v. 5
    Content: This book describes how modeling fluid flow in chemical reactors may offer solutions that improve design, operation, and performance of reactors. Chemical reactors are any vessels, tubes, pipes, or tanks in which chemical reactions take place. Computational Flow Modeling for Chemical Reactor Engineering will show the reactor engineer how to define the specific roles of computational flow modeling, select appropriate tools, and apply these tools to link reactor hardware to reactor performance. Overall methodology is illustrated with numerous case studies.Industry has invested sub
    Note: Description based upon print version of record. , Cover; TOCContents; PART I: INTRODUCTION; CHChapter 1. Reactor Engineering and Flow Modeling; 1.1. Chemical Reactor Engineering (CRE); 1.2. Computational Flow Modeling (CFM); 1.3. CFM for CRE; References; PART II: COMPUTATIONAL FLOW MODELING; CHChapter 2. Mathematical Modeling of Flow Processes; 2.1. Basic Governing Equations; 2.2. Auxiliary Equations; 2.3. Boundary Conditions; 2.4. Discussion; 2.5. Summary; References; CHChapter 3. Turbulent Flow Processes; 3.1. Introduction; 3.2. Turbulence: Physical Picture; 3.3. Modeling Approaches; 3.4. Turbulence Models Basedon RANS; 3.5. Summary , ReferencesCHChapter 4. Multiphase Flow Processes; 4.1. Introduction; 4.2. Modeling Dispersed Multiphase Flows; 4.3. Other Types of Multiphase Flows; 4.4. Summary; References; Appendix 4.1. Time Scales for Dispersed Multiphase Flows; Appendix 4.2. Correlations for Drag Coefficient; Appendix 4.3. Interphase Heat and Mass Transfer Correlations; CHChapter 5. Reactive Flow Processes; 5.1. Introduction; 5.2. Turbulent Reactive Mixing; 5.3. Modeling Approaches; 5.4. RANS-based Models of Reactive Flow Processes; 5.5. Multiphase Reactive Flow Processes; 5.6. Summary; References , CHChapter 6. Numerical Solution of Model Equations6.1. Introduction; 6.2. Finite Volume Method; 6.3. Finite Volume Method for Calculationof Flow Field; 6.4. Finite Volume Method for Unsteady Flows; 6.5. Application of Finite Volume Method; 6.6. Summary; References; CHChapter 7. Numerical Solution of Complex Flow Models; 7.1. Simulation of Turbulent Flows; 7.2. Simulation of Multiphase Flows; 7.3. Simulation of Reactive Flows; 7.4. Special Topics; 7.5. Summary; References; CHChapter 8. Computational Tools for Simulating Flow Processes; 8.1. Mapping a Computational Flow Model on a Computer , 8.2. Pre-processors8.3. Solvers; 8.4. Post-processors; 8.5. Summary; References; PART III: CFM FOR CRE; CHChapter 9. Flow Modeling for Reactor Engineering; 9.1. Reactor Engineering Methodology; 9.2. Example 1: Suspension Polymerization Reactor; 9.3. Example 2: OXY Reactor for EDC; 9.4. Example 3: Bubble Column Reactor; 9.5. Example 4: FCC Regenerator; 9.6. Summary; References; PART IV: APPLICATIONS; CHChapter 10. Stirred Reactors; 10.1. Engineering of Stirred Reactors; 10.2. CFD-based Modeling of Stirred Reactors; 10.3. Computational Snapshot Approach , 10.4. Application to Reactor Engineering10.5. Summary; References; CHChapter 11. Bubble Column Reactors; 11.1. Engineering of Bubble Column Reactors; 11.2. CFD-based Modeling of Bubble Column Reactors; 11.3. Application to Reactor Engineering; 11.4. Summary; References; Appendix 11.1. Multigroup Model to Simulate Bubble Size Distribution; CHChapter 12. Fluidized Bed Reactors; 12.1. Engineering Fluidized Bed Reactors; 12.2. CFD Modeling of Gas-Solid Reactors; 12.3. Applications to Reactor Engineering; 12.4. Summary; References; CHChapter 13. Fixed Bed and Other Types of Reactors , 13.1. Fixed Bed Reactors , English
    Additional Edition: ISBN 0-12-576960-1
    Language: English
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  • 4
    UID:
    almahu_9949697722102882
    Format: 1 online resource (285 p.)
    ISBN: 1-283-11864-5 , 9786613118646 , 0-08-093144-8
    Content: This book provides a hybrid methodology for engineering of trickle bed reactors by integrating conventional reaction engineering models with state-of-the-art computational flow models. The content may be used in several ways and at various stages in the engineering process: it may be used as a basic resource for making appropriate reactor engineering decisions in practice; as study material for a course on reactor design, operation, or optimization of trickle bed reactors; or in solving practical reactor engineering problems. The authors assume some background knowledge of reactor engineeri
    Note: Description based upon print version of record. , Front Cover; Trickle Bed Reactors Reactors : Engineering & Applications; Copyright; Contents; Preface; Chapter 1 - Introduction; Trickle Bed Reactors; Reactor Engineering of Trickle Bed Reactors; Organization of this Book; References; Chapter 2 - Hydrodynamics and Flow Regimes; Introduction; Flow Regimes; Flow Regime Transition; Estimation of Key Hydrodynamic Parameters; Summary; References; Chapter 3 - Reaction Engineering of Trickle Bed Reactors; Introduction; Overall Rate of Reaction; Reactor Performance Models for Trickle Bed Reactors; Summary; References , Chapter 4 - Flow Modeling of Trickle BedsIntroduction; Characterization of Packed Beds; Single-Phase Flow through Packed Bed; Gas-Liquid Flow through Packed Beds; Summary; References; Chapter 5 - Reactor Performance and Scale-Up; Introduction; Reactor Performance; Trickle Bed Reactor Design and Scale-Up; Engineering of Trickle Bed Reactors; Summary; References; Chapter 6 - Applications and Recent Developments; Introduction; Examples of Trickle Bed Reactor Applications; Recent Developments; Closure; References; Notations; Author Index; Subject Index , English
    Additional Edition: ISBN 0-444-56190-0
    Additional Edition: ISBN 0-444-52738-9
    Language: English
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  • 5
    UID:
    almahu_9948026082102882
    Format: 1 online resource (784 p.)
    ISBN: 0-12-801670-1
    Content: Industrial catalytic processes for fine and specialty chemicals provides a comprehensive methodology and state-of-the art toolbox for industrial catalysis. The book begins by introducing the reader to the interesting, challenging, and important field of catalysis and catalytic processes. The fundamentals of catalysis and catalytic processes are fully covered before delving into the important industrial applications of catalysis and catalytic processes, with an emphasis on green and sustainable technologies. Several case studies illustrate new and sustainable ways of designing catalysts and catalytic processes. The intended audience of the book includes researchers in academia and industry, as well as chemical engineers, process development chemists, and technologists working in chemical industries and industrial research laboratories.
    Note: Description based upon print version of record. , Front Cover; Industrial Catalytic Processes for Fine and Specialty Chemicals; Copyright; Contents; Contributors; Notations; Preface; Chapter 1: Catalysis and Catalytic Processes; 1.1. Introduction; 1.2. Catalysts and Catalytic Reactions; 1.2.1. Characteristics of Catalysts; 1.2.2. Homogeneous Catalysts; 1.2.3. Heterogeneous Catalysts; 1.3. Reaction and Reactor Engineering; 1.4. Organization of This Book; References; Part 1: Fundamentals; Chapter 2: Fundamentals of Homogeneous Catalysis; 2.1. Introduction; 2.2. Distinguishing Features of Homogeneous Catalysts , 2.3. Basic Concepts in Homogeneous Catalysis2.3.1. Elementary Steps in Homogeneous Catalysis; 2.3.1.1. Oxidative addition; 2.3.1.2. Coordination; 2.3.1.3. Insertion; 2.3.1.4. Reductive elimination; 2.4. Catalytic Cycle; 2.4.1. Hydrogenation of Olefins Using the Wilkinson Catalyst; 2.4.2. Hydroformylation of Propylene Using Co and Rh Complex Catalysts; 2.4.3. Carbonylation of Methanol to Acetic Acid; 2.5. Catalyst Performance; 2.6. Catalyst Deactivation; 2.7. Kinetics and Mechanism; 2.7.1. Classification of Catalysts and Reactions; 2.7.2. Hydrogenation Reactions; 2.7.3. Carbonylation Reactions , 2.7.4. Hydroformylation Reactions2.8. Scale-Up and Practical Considerations; 2.9. Conclusions and Future Trends; References; Chapter 3: Heterogeneous Catalysis; 3.1. Introduction; 3.2. Catalytic Steps in Heterogeneous Catalysis; 3.2.1. Diffusion; 3.2.2. Adsorption; 3.2.2.1. Heat of adsorption; 3.2.2.2. Concept of precursor-mediated adsorption; 3.2.2.3. Adsorption isotherms; 3.2.2.3.1. Freundlich adsorption isotherm; 3.2.2.3.2. Langmuir adsorption isotherm; 3.2.2.3.3. Multilayer physisorption isotherms; 3.2.2.3.4. Temkin isotherm; 3.2.2.4. Types of adsorption isotherms , 3.2.2.5. Kinetics of adsorption3.2.3. Surface Reactivity: Concept, Kinetics, and Mechanism; 3.2.3.1. Langmuir-Hinshelwood mechanism; 3.2.3.1.1. Rate-determining step approximation; 3.2.3.1.2. Steady state approximation; 3.2.3.2. Eley-Rideal mechanism; 3.2.4. Desorption; 3.3. Definitions; 3.4. Types of Solid Catalysts; 3.4.1. Bulk Catalysts; 3.4.1.1. Zeolites and mesoporous silica; 3.4.1.2. MOFs and COFs; 3.4.1.3. Oxides; 3.4.1.4. Layered compounds; 3.4.1.5. Carbon; 3.4.1.6. Carbides and nitrides; 3.4.2. Supported Catalysts; 3.4.2.1. Immobilized or grafted catalysts , 3.4.3. Key Issues in Catalyst Process Scale-Up3.5. Solid Catalysts in Industrial Processes; 3.6. Catalyst Preparation Methodologies; 3.6.1. Conventional Methods; 3.6.1.1. Precipitation and coprecipitation; 3.6.1.2. Fusion and alloy leaching; 3.6.1.3. Sol-gel process; 3.6.1.4. Flame hydrolysis method; 3.6.1.5. Hydrothermal method; 3.6.1.6. Impregnation, ion-exchange, and deposition-precipitation; 3.6.1.7. Grafting; 3.6.2. Advanced Methods; 3.6.2.1. Chemical and physical vapor deposition; 3.6.2.2. Ultrasound methods; 3.6.2.3. Microemulsion method; 3.6.2.4. Mechanochemical synthesis , 3.7. Catalyst Characterization Techniques
    Additional Edition: ISBN 0-12-801457-1
    Language: English
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  • 6
    Online Resource
    Online Resource
    Weinheim, Germany :Wiley-VCH,
    UID:
    almafu_9960767886902883
    Format: 1 online resource
    ISBN: 9783527812066 , 3527812067
    Note: Front Matter -- Introduction. Multiphase Flows and Process Industries / Vivek V Ranade, Ranjeet P Utikar -- Fundamentals of Multiphase Flows. Multiphase Flows: Flow Regimes, Lower Order Models, and Correlations / Jyeshtharaj B Joshi, Mukesh Kumar -- Multiscale Modeling of Multiphase Flows / Kay A Buist, Maike W Baltussen, EAJF (Frank) Peters, JAM (Hans) Kuipers -- Enabling Process Innovations via Mastering Multiphase Flows: Gas-Liquid and Gas-Liquid-Solid Processes / Gopal Manoharan Karthik, Vivek V Buwa -- Enabling Process Innovations via Mastering Multiphase Flows. Liquid-Liquid Processes: Mass Transfer Processes and Chemical Reactions / Norbert Kockmann, David W Agar -- Enabling Process Innovations via Mastering Multiphase Flows: Gas-Solid Processes / Milinkumar T Shah, Ranjeet P Utikar, Vishnu K Pareek -- Liquid-Solid Processes / Divyamaan Wadnerkar, Prashant Gunjal, VedPrakash Mishra -- Three or More Phase Reactors / Onkar N Manjrekar, Yujian Sun, Patrick L Mills -- Trickle Bed Reactors / Onkar N Manjrekar, Patrick L Mills -- Flows with Phase Change / Vivek V Ranade, Ranjeet P Utikar -- Status and Path Forward. Summary and Outlook / Vivek V Ranade, Ranjeet P Utikar -- Index
    Additional Edition: Print version: Ranade, Vivek V. Multiphase flows for process industries ISBN 9783527343775
    Language: English
    Keywords: Electronic books. ; Electronic books. ; Electronic books.
    URL: Volltext  (URL des Erstveröffentlichers)
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  • 7
    UID:
    almafu_9960950764602883
    Format: 1 online resource : , illustrations (some color)
    ISBN: 9783527822874 , 3527822879 , 9783527346448 , 3527346449
    Additional Edition: ISBN 3527346430
    Additional Edition: ISBN 9783527346431
    Language: English
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  • 8
    Online Resource
    Online Resource
    Amsterdam [u.a.] : Elsevier, Butterworth-Heinemann
    UID:
    b3kat_BV042202167
    Format: 1 Online-Ressource
    Edition: 1. publ.
    ISBN: 9780080999685
    Series Statement: IChemE
    Language: English
    Keywords: Industrieabwasser ; Behandlung ; Recycling ; Industrieabwasser ; Abwasserreinigung ; Recycling World Congress
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  • 9
    Book
    Book
    Amsterdam [u.a.] : Elsevier, Butterworth-Heinemann
    UID:
    b3kat_BV042062036
    Format: XVI, 560 S. , Ill., graph. Darst.
    Edition: 1. publ.
    ISBN: 9780080999685
    Series Statement: IChemE
    Language: English
    Subjects: General works
    RVK:
    Keywords: Industrieabwasser ; Behandlung ; Recycling ; Industrieabwasser ; Abwasserreinigung ; Recycling World Congress
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  • 10
    UID:
    b3kat_BV039829308
    Format: 1 Online-Ressource (1 online resource (x, 274 p.))
    ISBN: 9780444527387 , 0444527389 , 9780080931449 , 0080931448
    Note: This book provides a hybrid methodology for engineering of trickle bed reactors by integrating conventional reaction engineering models with state-of-the-art computational flow models. The content may be used in several ways and at various stages in the engineering process: it may be used as a basic resource for making appropriate reactor engineering decisions in practice; as study material for a course on reactor design, operation, or optimization of trickle bed reactors; or in solving practical reactor engineering problems. Facilitates development of high fidelity models for industrial applications Facilitates selection and application of appropriate models Guides development and application of computational models to trickle beds , Hydrodynamics and Flow Regimes -- Reaction Engineering of Trickle Bed Reactors -- Flow Modeling of Trickle Beds -- Reactor Performance and Scale-up -- Applications and Recent Developments , Includes bibliographical references and indexes
    Language: English
    Subjects: Chemistry/Pharmacy
    RVK:
    Keywords: Chemischer Reaktor
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