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- W2552471161 abstract "The intensification and mechanism of gas-liquid mass transfer in a water-sparged aerocyclone by microparticles were conducted in this paper. The effects of solid concentration cs, gas inlet velocity ug and liquid jet velocity uL on specific mass transfer area a, mass transfer coefficient of liquid side kL, volumetric mass transfer coefficient kLa and mass transfer intensification factor E were investigated by using a chemical method (CO2-air-NaOH absorption system) and a physical method (CO2-air-H2O absorption system). The results indicated that the kL, a, kLa and E increased and then decreased with the increase of solid concentration cs, cs has a maximum value. Solid particles could intensify mass transfer, increasing kL, a and kLa under different ug and uL, whereas E decreased with the increase of ug and uL. The mechanism of solid particles intensifying gas-liquid mass transfer was realized through the three paths from increasing a, kL and S, but the increase of the surface renew frequency S was the major mechanism." @default.
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- W2552471161 date "2015-01-01" @default.
- W2552471161 modified "2023-09-27" @default.
- W2552471161 title "Intensification and mechanism of gas-liquid mass transfer in water-sparged aerocyclone by microparticles" @default.
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