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Synopsis

  • Fills the gap that has been overlooked by most other researchers; namely, the incorporation of thermodynamics into process optimization procedures
  • Presents a unique synthesis of energy optimization and process integration that applies scientific information from thermodynamics, kinetics, and systems theory
  • Discusses engineering applications including power generation, resource upgrading, radiation conversion and chemical transformation, in static and dynamic systems
  • Clarifies how to identify thermal and chemical constraints and incorporate them into optimization models and solutions
  • New second editon contains 30% new material
  • Addition of fuel cell theory that is unified with the theory of flow energy systems

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