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Process Design, Integration, and Intensification

Process Design, Integration, and Intensification

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With the growing emphasis on enhancing the sustainability and efficiency of industrial plants, process integration and intensification are gaining additional interest throughout the chemical engineering community. Some of the hallmarks of process integration and intensification include a holistic perspective in design, and the enhancement of material and energy intensity. The techniques are applicable for individual unit operations, multiple units, a whole industrial facility, or even a cluster of industrial plants. This book aims to cover recent advances in the development and application of process integration and intensification. Specific applications are reported for hydraulic fracturing, palm oil milling processes, desalination, reactive distillation, reaction network, adsorption processes, herbal medicine extraction, as well as process control.

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Keywords

  • adsorption
  • breakthrough
  • CFD-simulation
  • compartmental modeling
  • competing reaction system
  • dehumidification
  • desalination
  • Design
  • EDCs
  • energy
  • experimental
  • extraction
  • feasible operating range analysis
  • fixed-bed column
  • flexibility index
  • graphical approach
  • History of engineering & technology
  • humidification
  • hydraulic fracturing
  • input shaping
  • integrating
  • manufacturing
  • mathematical programming
  • membrane distillation
  • mixing
  • model order reduction
  • multiple steady state
  • n/a
  • Natural Products
  • optimisation
  • optimization
  • phytomedicines
  • PMPS particles
  • predictive control
  • reaction conversion
  • reactive distillation
  • Regulatory
  • steady state simulation
  • surrogate-based optimization
  • TAME synthesis
  • Technology, engineering, agriculture
  • Technology: general issues
  • underdamped
  • unstable
  • utilisation index
  • Water

Links

DOI: 10.3390/books978-3-03897-983-8

Editions

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