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Liquid phase oxidation chemistry in continuous-flow microreactors

  • H.P.L. Gemoets
  • , Y. Su
  • , M. Shang
  • , V. Hessel
  • , R. Luque
  • , T. Noel

    Onderzoeksoutput: Bijdrage aan tijdschriftTijdschriftartikelAcademicpeer review

    3653 Downloads (Pure)

    Samenvatting

    Continuous-flow liquid phase oxidation chemistry in microreactors receives a lot of attention as the reactor provides enhanced heat and mass transfer characteristics, safe use of hazardous oxidants, high interfacial areas, and scale-up potential. In this review, an up-to-date overview of both technological and chemical aspects of liquid phase oxidation chemistry in continuous-flow microreactors is given. A description of mass and heat transfer phenomena is provided and fundamental principles are deduced which can be used to make a judicious choice for a suitable reactor. In addition, the safety aspects of continuous-flow technology are discussed. Next, oxidation chemistry in flow is discussed, including the use of oxygen, hydrogen peroxide, ozone and other oxidants in flow. Finally, the scale-up potential for continuous-flow reactors is described
    Originele taal-2Engels
    Pagina's (van-tot)83-117
    TijdschriftChemical Society Reviews
    Volume45
    Nummer van het tijdschrift1
    DOI's
    StatusGepubliceerd - 2016

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