Sustainable Design Through Process Integration

Fundamentals and Applications to Industrial Pollution Prevention, Resource Conservation, and Profitability Enhancement

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Paperback, blz. | Engels
Elsevier Science | e druk, 2017
ISBN13: 9780128098233
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Elsevier Science e druk, 2017 9780128098233
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Samenvatting

Sustainable Design through Process Integration: Fundamentals and Applications to Industrial Pollution Prevention, Resource Conservation, and Profitability Enhancement, Second Edition, is an important textbook that provides authoritative, comprehensive, and easy-to-follow coverage of the fundamental concepts and practical techniques on the use of process integration to maximize the efficiency and sustainability of industrial processes. The book is ideal for adoption in process design and sustainability courses. It is also a valuable guidebook to process, chemical, and environmental engineers who need to improve the design, operation, performance, and sustainability of industrial plants. The book covers pressing and high growth topics, including benchmarking process performance, identifying root causes of problems and opportunities for improvement, designing integrated solutions, enhancing profitability, conserving natural resources, and preventing pollution. Written by one of the world’s foremost authorities on integrated process design and sustainability, the new edition contains new chapters and updated materials on various aspects of process integration and sustainable design. The new edition is also packed with numerous new examples and industrial applications.

Specificaties

ISBN13:9780128098233
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

1. Introduction to Sustainability, Sustainable Design, and Process Integration<br>2. Overview of Process Economics<br>3. Benchmarking Process Performance Through Overall Mass Targeting<br>4. Direct-Recycle Networks: Graphical and Algebraic Targeting Approaches<br>5. Synthesis of Mass-Exchange Networks<br>6. Combining Mass-Integration Strategies<br>7. Heat Integration<br>8. Integration of Combined Heat and Power Systems<br>9. Synthesis of Heat-Induced Separation Network for Condensation of Volatile<br>10. Property Integration <br>11. Overview of Optimization<br>12. An Optimization Approach to Direct Recycle<br>13. Synthesis of Mass-Exchange Networks: A Mathematical Programming Approach<br>14. Synthesis of Reactive Mass-Exchange Networks<br>15. Mathematical Optimization Techniques for Mass Integration<br>16. Mathematical Techniques for the Synthesis of Heat-Exchange Networks<br>17. Synthesis of Combined Heat and Reactive Mass-Exchange Networks<br>18. Water- Energy Nexus for Thermal Desalination Processes<br>19. Design of Membrane-Separation Systems<br>20. Macroscopic Approaches of Process Integration<br>21. Concluding Thoughts: Launching Successful Process-Integration Initiatives and Applications<br>Appendix I: Conversion Relationships for Concentrations and Conversion Factor for Units<br>Appendix II: Modeling of Mass-Exchange Units for Environmental Applications

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        Sustainable Design Through Process Integration