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Membrane and Membrane Reactors Operations in Chemical Engineering

Membrane and Membrane Reactors Operations in Chemical Engineering

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This Special Issue is aimed at highlighting the potentialities of membrane and membrane reactor operations in various sectors of chemical engineering, based on application of the process intensification strategy. In all of the contributions, the principles of process intensification were pursued during the adoption of membrane technology, demonstrating how it may lead to the development of redesigned processes that are more compact and efficient while also being more environmental friendly, energy saving, and amenable to integration with other green processes. This Special Issue comprises a number of experimental and theoretical studies dealing with the application of membrane and membrane reactor technology in various scientific fields of chemical engineering, such as membrane distillation for wastewater treatment, hydrogen production from reforming reactions via inorganic membrane and membrane photoassisted reactors, membrane desalination, gas/liquid phase membrane separation of CO2, and membrane filtration for the recovery of antioxidants from agricultural byproducts, contributing to valorization of the potentialities of membrane operations.

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Keywords

  • advanced separations
  • clarification
  • CO2 conversion
  • desalination
  • Ethanol
  • fouling renewable heat sources
  • gas/liquid separation
  • hydrogel composite membranes
  • Hydrogen
  • hydrogen production
  • ionic liquids membranes
  • membrane configuration
  • membrane distillation
  • membrane engineering
  • membrane reactor
  • Methane
  • micro channel
  • micro contactor
  • micro direct methanol fuel cell (µDMFC)
  • microfiltration (MF)
  • modeling
  • multivariate analysis
  • on-board
  • orange press liquor
  • Palladium
  • Pd-based membrane
  • photocatalysis
  • photocatalytic membrane reactor
  • porous membranes
  • separator
  • solar energy
  • steam reforming
  • Two-Phase Flow
  • ultrafiltration (UF)
  • wastewater treatment
  • water splitting
  • Z-scheme

Links

DOI: 10.3390/books978-3-03921-023-7

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