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Modeling and Simulation of Polymerization Processes

Modeling and Simulation of Polymerization Processes

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This reprint is a compilation of nine papers published in Processes, in a Special Issue on “Modeling and Simulation of Polymerization Processes”. It aimed to address both new findings on basic topics and the modeling of the emerging aspects of product design and polymerization processes. It provides a nice view of the state of the art with regard to the modeling and simulation of polymerization processes. The use of well-established methods (e.g., the method of moments) and relatively more recent modeling approaches (e.g., Monte Carlo stochastic modeling) to describe polymerization processes of long-standing interest in industry (e.g., rubber emulsion polymerization) to polymerization systems of more modern interest (e.g., RDRP and plastic pyrolysis processes) are comprehensively covered in the papers contained in this reprint.

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Keywords

  • aqueous phase polymerization
  • dithiolactones
  • emulsion polymerization
  • ethylene polymerization
  • free-radical polymerization
  • initiator feeding policies
  • kinetic modeling
  • mathematical modeling
  • mechanical parameter
  • metallocene
  • methyl methacrylate
  • modeling and simulation
  • molecular simulation
  • Monte Carlo simulation
  • n/a
  • nano-SiO2
  • nitrile rubber
  • nitroxide mediated polymerization
  • organoboron compounds
  • Poly(acrylic acid)
  • polyelectrolytes
  • polymer characterization
  • polymer grafting
  • polymer microstructure
  • polymer reaction engineering
  • polymer synthesis
  • polystyrene
  • process intensification
  • radical polymerization
  • RAFT polymerization
  • reaction model
  • reversible deactivation radical polymerization
  • semi-batch to continuous
  • silane coupling agent
  • styrene
  • styrene–butadiene rubber
  • thermal pyrolysis
  • Thermal stability
  • vinyl monomers
  • zirconium-based catalyst

Links

DOI: 10.3390/books978-3-0365-4811-1

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