Abstract
Microreactors provide an enhanced mixing performance but suffer from low throughput. This work proposed a macro-microreactor with designed internals to achieve both process intensification and scale-up for the liquid-liquid homogeneous chemical processes. Numerical simulations utilizing computational fluid dynamics were conducted to investigate the fluid mechanics and the properties of mixing of a macro-microreactor (feature size >2000 μm). Experimental validation using the Villermaux-Dushman reaction demonstrated that this easily fabricated macro-microreactor with optimized helical-shaped internal achieved a comparable mixing performance, lower pressure drop, and higher throughput compared to a typical microreactor with a smaller feature size (1000 μm). The macro-microreactor would find more applications in industrial liquid-liquid homogeneous chemical processes.
Original language | English |
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Pages (from-to) | 797-810 |
Number of pages | 14 |
Journal | Industrial and Engineering Chemistry Research |
Volume | 64 |
Issue number | 1 |
DOIs | |
State | Published - 8 Jan 2025 |