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Titlebook: Reactive Bubbly Flows; Final Report of the Michael Schlüter,Dieter Bothe,Ulrich Nieken Book 2021 The Editor(s) (if applicable) and The Aut

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Experimental Investigation of Local Hydrodynamics and Chemical Reactions in Taylor Flows Using Magnnside the bubble wake, acting as a mixing zone. High reaction yields are mainly influenced by the hydrodynamics within these zones. However, undisturbed hydrodynamic measurements of low viscous systems inside the bubble wakes are lacking. In this work we report on non-invasive MRI of gas–liquid Tayl
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Determination of Intrinsic Gas-Liquid Reaction Kinetics in Homogeneous Liquid Phase and the Impact e reaction kinetics without mass transfer limitations a new reactor concept has been developed. As an example for industrial relevant reactions, the non-catalyzed oxidation of toluene with oxygen was investigated. For a simplified reaction network rate expressions and corresponding kinetic coefficie
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,Experimental Investigation of Reactive Bubbly Flows—Influence of Boundary Layer Dynamics on Mass Trtion is not yet fully understood, a reliable prediction of yield and selectivity is not possible. Within this work different benchmark experiments are developed, allowing the investigation of the interplay of mixing and chemical reactions. For precise predictions of the chemical process, a detailed
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,Experimental Characterization of Gas–Liquid Mass Transfer in a Reaction Bubble Column Using a Neutrf a bubble column with a quick neutralization reaction as an interesting limiting case. The model column used for this purpose had a volume of about . = 12 L and a modular injection system for the production of bubble chains and a bubble curtain, consisting of four bubble nozzles. Exclusively optica
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