JOURNAL OF CHEMICAL ENGINEERING OF JAPAN | |
Analysis of Bubble Holdup Structure in Viscose Three-Phase Fluidized Beds | |
Hae Ryong Jin3  In Soo Han3  Yong Kang3  Ki Won Jun1  Ho Lim3  Hyun Oh Lim2  | |
[1] Green Chemical Technology Division, Korea Research Institute of Chemical Technology;Graduate School of Green Energy Technology, Chungnam National University;School of Chemical Engineering, Chungnam National University | |
关键词: Holdup Structure; Viscous Liquid; Fluidized Bed; Three-Phase; Large and Small Bubbles; | |
DOI : 10.1252/jcej.12we058 | |
来源: Maruzen Company Ltd | |
【 摘 要 】
References(25)The holdups of two kinds of bubbles such as relatively large and small bubbles have been discriminated and investigated in a viscous three-phase (gas/liquid/solid) fluidized bed having a diameter of 0.102 m (i.d.) and height of 2.5 m, respectively. Effects of gas (UG) and liquid (UL) velocities, particle size (dP), and liquid viscosity (μL) on the holdups of relatively large and small bubbles are determined. The holdups of two kinds of bubbles are estimated by means of the dynamic gas disengagement method combining with the static pressure drop method. The increase in the slope of pressure drop with a variation of elapsed time was quite different from each other between the two kinds of bubbles. It has been found that the holdup of relatively large bubbles increased with increasing gas velocity but decreased with liquid velocity and liquid viscosity. However, the holdup showed a local minimum with a variation of fluidized particle size. The holdup of relatively small bubbles increased with an increase in the gas velocity or solid particle size, but decreased with an increase in the liquid velocity or viscosity. The holdups of two kinds of bubbles are well correlated in terms of operating variables within these experimental conditions, respectively.
【 授权许可】
Unknown
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