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Characterisation of liquid film in a microstructured falling film reactor using laser scanning confocal microscopy

  • K.K. Yeong
  • , A. Gavriilidis
  • , R. Zapf
  • , H.J. Kost
  • , V. Hessel
  • , A. Boyde

    Research output: Contribution to journalArticleAcademicpeer-review

    Abstract

    Reflection confocal microscopy was used to measure the thicknesses of falling thin films generated using microstructured plates. Each plate contained straight parallel channels through which liquid fell vertically under gravity. Three different channel dimensions were used: 300 × 100 µm, 600 × 200 µm and 1200 × 400 µm (width × depth). Measurements were performed for acetone, ethanol and isopropanol and gave reasonable agreement with theoretical predictions and correlations from the literature. Discrepancies were attributed to the fact that these equations do not consider parameters that affect three-phase contact lines such as surface tension and contact angle. No trend of film thickness on channel width was observed and was probably due to different surface heterogeneity and roughness characteristics amongst the plates. Measurement difficulties were encountered at low liquid film thicknesses and where the angle of the liquid meniscus was too steep.
    Original languageEnglish
    Pages (from-to)463-472
    JournalExperimental Thermal and Fluid Science
    Volume30
    Issue number5
    DOIs
    Publication statusPublished - 2006

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