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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Tillverkningsteknik

    Basic Principles and Calculations in Chemical Engineering

    AvDavid Himmelblau,James Riggs

    Pearson Education

    2012

    Del i serien International Series in the Physical and Chemical Engineering Sciences

    2 149 kr

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    Häftad

    1 134 kr

    Häftad

    965 kr

    Beskrivning

    The Number One Guide to Chemical Engineering Principles, Techniques, Calculations, and Applications: Now Even More Current, Efficient, and Practical

     

    Basic Principles and Calculations in Chemical Engineering, Eighth Edition goes far beyond traditional introductory chemical engineering topics, presenting applications that reflect the full scope of contemporary chemical, petroleum, and environmental engineering. Celebrating its fiftieth Anniversary as the field’s leading practical introduction, it has been extensively updated and reorganized to cover today’s principles and calculations more efficiently, and to present far more coverage of bioengineering, nanoengineering, and green engineering.

     

    Offering a strong foundation of skills and knowledge for successful study and practice, it guides students through formulating and solving material and energy balance problems, as well as describing gases, liquids, and vapors. Throughout, the authors introduce efficient, consistent, student-friendly methods for solving problems, analyzing data, and gaining a conceptual, application-based understanding of modern chemical engineering processes. This edition’s improvements include many new problems, examples, and homework assignments.

     

    Coverage includes

    • Modular chapters designed to support introductory chemical engineering courses of any length
    • Thorough introductions to unit conversions, basis selection, and process measurements
    • Consistent, sound strategies for solving material and energy balance problems
    • Clear introductions to key concepts ranging from stoichiometry to enthalpy
    • Behavior of gases, liquids, and solids: ideal/real gases, single component two-phase systems, gas-liquid systems, and more
    • Self-assessment questions to help readers identify areas they don’t fully understand
    • Thought/discussion and homework problems in every chapter
    • New biotech and bioengineering problems throughout
    • New examples and homework on nanotechnology, environmental engineering, and green engineering
    • Extensive tables, charts, and glossaries in each chapte
    • Many new student projects
    • Reference appendices presenting atomic weights and numbers, Pitzer Z factors, heats of formation and combustion, and more

     

    Practical, readable, and exceptionally easy to use, Basic Principles and Calculations in Chemical Engineering, Eighth Edition,is the definitive chemical engineering introduction for students, license candidates, practicing engineers, and scientists.

     

    CD-ROM INCLUDES

    • The latest Polymath trial software for solving linear, nonlinear, and differential equations and regression problems
    • Point-and-click physical property database containing 700+ compounds
    • Supplemental Problems Workbook containing 100+ solved problems
    • Descriptions and animations of modern process equipment
    • Chapters on degrees of freedom, process simulation, and unsteady-state material balances
    • Expert advice for beginners on problem-solving in chemical engineering

     

    Produktinformation

    • Märke:Pearson Education
    • Utgivningsdatum:2012-10-18
    • Höjd:206 x 258 x 50 mm
    • Vikt:1 800 g
    • Språk:Engelska
    • Serie:International Series in the Physical and Chemical Engineering Sciences
    • Antal sidor:768
    • Upplaga:8
    • Förlag:Pearson Education
    • EAN:9780132346603

    Utforska kategorier

    • Tillverkningsteknik inom Naturvetenskap och teknik

    Mer om författaren

    David M. Himmelblau was (until his death in April) the American Petrofina Foundation Centennial Professor in Chemical Engineering at the University of Texas, Austin. The author of sixteen books, his areas of research included the use of artificial neural networks for fault diagnosis and data rectification. James B. Riggs is Professor in the Chemical Engineering Department at Texas Tech University, where he directs the Texas Tech Process Control and Optimization Consortium. His books include Chemical Process Control, Second Edition and An Introduction to Numerical Methods for Chemical Engineers, Second Edition.

    Innehållsförteckning

    • Preface         xiii Read Me         xvAcknowledgements         xixAbout the Authors         xx  PART I: INTRODUCTION          1Chapter 1: What are Chemical Engineering and Bioengineering?         31.1 Introduction   31.2 A Brief History of Chemical Engineering   41.3 Where Do Chemical and Bioengineers Work?   61.4 Future Contributions of Chemical and Bioengineering   71.5 Conclusion   10  Chapter 2: Introductory Concepts         112.1 Systems of Units   122.2 Conversion of Units   172.3 Dimensional Consistency   252.4 Significant Figures   292.5 Validation of Results   362.6 The Mole and Molecular Weight   372.7 Choosing a Basis   442.8 Density and Specific Gravity   492.9 Concentration   552.10 Temperature   592.11 Pressure and Hydrostatic Head   652.12 Flow Rate   78  Part II: Material Balances         99Chapter 3: Material Balances          1013.1 Introduction to Material Balances   1023.2 A General Strategy for Solving Material Balance Problems   123  Chapter 4: Material Balances without Reaction          159  Chapter 5: Material Balances Involving Reactions         1895.1 Stoichiometry   1905.2 Terminology for Reaction Systems   1985.3 Species Mole Balances   2105.4 Element Material Balances   2265.5 Material Balances for Combustion Systems   233  Chapter 6: Material Balances for Multi-Unit Systems         2676.1 Primary Concepts   2686.2 Sequential Multi-Unit Systems   2716.3 Recycle Systems   2906.4 Bypass and Purge   3066.5 The Industrial Application of Material Balances   314  Part III: Gases, Vapors, and Liquids          347Chapter 7: Ideal and Real Gases         3497.1 Ideal Gases   3507.2 Real Gases: Equations of State   3667.3 Real Gases: Compressibility Charts   3777.4 Real Gas Mixtures   384  Chapter 8: Multiphase Equilibrium          4118.1 Introduction   4118.2 Phase Diagrams and the Phase Rule   4138.3 Single Component Two-Phase Systems (Vapor Pressure)   4258.4 Two-Component Gas/Single-Component Liquid Systems   4368.5 Two Component Gas/Two Component Liquid Systems   4558.6 Multicomponent Vapor-Liquid Equilibrium    466  Part IV: Energy           487Chapter 9: Energy Balances         4899.1 Terminology Associated with Energy Balances   4919.2 Types of Energy to Be Included in Energy Balances   4969.3 Energy Balances without Reaction   530  Chapter 10: Energy Balances: How to Account for Chemical Reaction          59710.1 The Standard Heat (Enthalpy) of Formation   59810.2 The Heat (Enthalpy) of Reaction   60310.3 Integration of Heat of Formation and Sensible Heat   61410.4 The Heat (Enthalpy) of Combustion   635  CHAPTER 11: Humidity (Psychrometric) Charts and Their Use 65311.1 Terminology 65411.2 The Humidity (Psychrometric) Chart 65711.3 Applications of the Humidity Chart 666  Part V: Supplementary Material          681Chapter 12: Analysis Of The Degrees Of Freedom in a Steady-State Process          683Chapter 13: Heats of Solution and Mixing         708Chapter 14: The Mechanical Energy Balance          728Chapter 15: Liquids and Gases in Equilibrium with Solids          756Chapter 16: Solving Material and Energy Balances UsingProcess Simulators (Flowsheeting Codes)         768Chapter 17: Unsteady-State Material And Energy Balances          800  Appendixes          827Appendix A: Answers to Supplemental Questions and Problems 829Appendix B: Atomic Weights and Numbers         844Appendix C: Table of the Pitzer Z0 and Z1 Factors         845Appendix D: Heats of Formation and Combustion         850Appendix E: Answers to Selected Problems         854Appendix F: Physical Properties Of Various Organic And Inorganic Substances         861Appendix G: Heat Capacity Equations         873Appendix H: Vapor Pressures         877Appendix I: Heats of Solution and Dilution         878Appendix J: Enthalpy-Concentration Data          879Appendix K: Thermodynamic Charts         886Appendix L: Physical Properties of Petroleum Fractions         893Appendix M: Solution of Sets of Equations          902Appendix N: Fitting Functions to Data          924  Index         928