Dr.-Ing. Marko Hoffmann

Eissendorfer Str. 38, Building O, Room 1.014

Tel.: +49 40 42878-3152

E-Mail: Marko Hoffmann.


Education

  • Construction and Apparatus Engineering
  • Fundamentals of Process Engineering and Material Engineering
  • Fundamentals of Technical Drawing


Publications

[148976]
Title: Bildgebende UV/VIS Spektroskopie zur Untersuchung des Einflusses der Fluiddynamik auf die Selektivität und Ausbeute von schnellen konkurrierenden konsekutiven gasflüssig Reaktionen.
Written by: Kexel, F.; Kameke, A.v.; Oßberger, M.; Hoffmann, M.; Klüfers, P.; Schlüter, M.
in: <em>Chemie Ingenieur Technik</em>. (2020).
Volume: <strong>93</strong>. Number: (1-2),
on pages: 297-305
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DOI: https://doi.org/10.1002/cite.202000159
URL: https://onlinelibrary.wiley.com/doi/abs/10.1002/cite.202000159
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Abstract: In times of increasing resource scarcity, the conversion of substances with high yield and selectivity is becoming increasingly important. For many bulk chemicals, gaseous substances must be mixed with a continuous liquid phase and reacted (e.g., oxidation, hydrogenation, chlorination). The mixing of the gas phase with the liquid phase is often performed in bubbly flows, e.g., in bubble column reactors. The time scales of the mixing are mainly determined by bubble-induced buoyancy flows, the flow around the bubbles and transport resistances of phase boundaries and boundary layers. In this research work, we systematically investigate to what extent the formation of a side product in a fast competing subsequent reaction can be influenced by the time scales of mixing. For this purpose, a Taylor bubble experiment is used, in which the time scales of mixing can be varied systematically and reproducibly. It is shown, that the mixing in the wake of a bubble is of great importance for the formation of by-products.