Optimization of Sustainable Process Systems
eBook - ePub

Optimization of Sustainable Process Systems

Multiscale Models and Uncertainties

  1. 374 pages
  2. English
  3. ePUB (mobile friendly)
  4. Available on iOS & Android
eBook - ePub

Optimization of Sustainable Process Systems

Multiscale Models and Uncertainties

About this book

Presents a systematic review of optimizing sustainable process systems through multiscale modeling and uncertainty analysis

The global pursuit of net-zero carbon emissions has created an urgent need for chemical engineers and energy researchers to design systems that are both sustainable and resilient. While renewable energy sources such as solar and wind offer great potential, their variability introduces significant challenges that must be addressed through advanced optimization techniques. Optimization of Sustainable Process Systems: Multiscale Models and Uncertainties connects optimization fundamentals with their applications in sustainable energy systems with a particular emphasis on the challenges posed by uncertainty.

Divided into two parts, the book first introduces the core mathematical frameworks and methods needed to model and optimize uncertain systems, including stochastic programming, robust optimization, reinforcement learning, and multiscale algorithms. The authors clearly explain these state-of-the-art tools with attention to both theory and computational practice. The second part shifts to applications, demonstrating how these techniques are applied in real-world contexts such as renewable-based hydrogen, methanol, and ammonia production; carbon capture; shale gas systems; biomass integration; and power system optimization. Throughout the text, the authors emphasize the integration of renewables with chemical industries while highlighting strategies to manage variability, strengthen supply chains, and improve system-wide efficiency.

Combining rigorous fundamentals with cutting-edge applications through a tutorial-style approach, Optimization of Sustainable Process Systems: Multiscale Models and Uncertainties:

  • Provides the foundation and tools needed to design resilient, optimized, and sustainable energy systems
  • Addresses optimization methods under uncertainty tailored to energy and process systems
  • Presents a unified treatment of stochastic programming, robust optimization, and reinforcement learning techniques
  • Integrates renewable-based systems with chemical industry supply chain design and operation
  • Addresses computational challenges in large-scale optimization of energy systems

Both a theoretical resource and a practical guide for applied problem-solving, Optimization of Sustainable Process Systems: Multiscale Models and Uncertainties is ideal for graduate-level courses in chemical engineering, process systems engineering, energy systems optimization, and operations research. It is also a valuable reference for industrial researchers, system modelers, and developers working on sustainable process design and energy transition strategies.

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Information

Publisher
Wiley
Year
2026
Print ISBN
9781394205578
Edition
1
eBook ISBN
9781394205592

Table of contents

  1. Cover
  2. Table of Contents
  3. Title Page
  4. Copyright
  5. List of Contributors
  6. Preface
  7. 1 An Introduction to Bilevel Optimization and Its Application to Sustainable Systems Engineering
  8. 2 Exploiting the Multiscale Structure of Sustainable Engineering Problems via Network-Based Decomposition
  9. 3 Multi-Objective Bayesian Optimization for Networked Black-Box Systems: A Path to Greener Profits and Smarter Designs
  10. 4 A Tutorial on Multi-time Scale Optimization Models and Algorithms
  11. 5 Many Objective Optimization Tools for Sustainable Decision-Making
  12. 6 Optimization Models and Algorithms for Design and Planning of Sustainable Processes and Energy Systems
  13. 7 Multiscale Modeling and Optimization of Carbon Capture Processes
  14. 8 Integrated Design and Operability Optimization of Sustainable Process Intensification Systems
  15. 9 Circular Economy Assessment Tools for Process Systems
  16. 10 Decarbonization of Steam Cracking for Clean Olefins Production: Optimal Microgrid Scheduling
  17. 11 Multiscale Strategies for the Use of Chemicals as Energy Storage Systems
  18. 12 Repurposing a Conventional Oil Refinery for Biomass Processing to Aviation Fuel: Process Design and Techno-Environmental Evaluation for a Real Operating Plant
  19. 13 Uncertainty Quantification of Solid Sorbent-Based CO2 Capture Processes
  20. Index
  21. End User License Agreement

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