including tank geometry and dimensions, impeller type, dimensions
and rotational impeller speed, aeration system and gas flow
rate, physical and rheological properties of gas and liquid phases,
temperature, and pressure. In an attempt to elucidate the effects
of the latter parameters on the absorption rate coefficient, a great
amount of published investigations are encountered in the literature;
some interesting overviews are given in [1–5]. They provide
improved knowledge on gas–liquid mass transfer through experimental
data, empirical correlations, mechanistic analysis or more
recently numerical simulations
including tank geometry and dimensions, impeller type, dimensionsand rotational impeller speed, aeration system and gas flowrate, physical and rheological properties of gas and liquid phases,temperature, and pressure. In an attempt to elucidate the effectsof the latter parameters on the absorption rate coefficient, a greatamount of published investigations are encountered in the literature;some interesting overviews are given in [1–5]. They provideimproved knowledge on gas–liquid mass transfer through experimentaldata, empirical correlations, mechanistic analysis or morerecently numerical simulations
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