Effect of gas density on hydrodynamic characteristics and gas-liquid interfacial area in a 5 kW bubble column reactor

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초록

This study investigated the impact of gas density on the hydrodynamic characteristics and gas-liquid interfacial area within a bubble column reactor, utilizing air, helium, and tap water. The performance of two types of distributors was compared. Key parameters such as gas holdup, transition gas holdup, transition velocity, bubble size, and specific interfacial area were analyzed across various gas velocities, pressures, and helium concentrations in the air-helium mixtures. As the gas density increased, the gas holdup, transition gas holdup, and transition velocity increased. The porous-plate distributor exhibited better performance metrics than the tubetype distributor. Furthermore, power-law relationships were derived for various parameters in both homogeneous and heterogeneous regimes. In the homogeneous regime, gas velocity exerted a more substantial influence on the gas holdup and specific interfacial area than gas density, whereas in the heterogeneous regime, both factors had nearly equivalent influences.

키워드

Bubble column; Gas density; Gas holdup; Flow regime transition; Bubble size; Interfacial area; MASS-TRANSFER CHARACTERISTICS; FLOW REGIME TRANSITION; SIZE DISTRIBUTION; TRANSFER COEFFICIENT; ELEVATED PRESSURE; HOLD-UP; PREDICTION
제목
Effect of gas density on hydrodynamic characteristics and gas-liquid interfacial area in a 5 kW bubble column reactor
저자
Kim, Daewook; Jang, Jae Jun; Hwang, Byung Wook; Nam, Hyungseok; Lee, Doyeon
DOI
10.1016/j.ijmultiphaseflow.2025.105220
발행일
2025-07
유형
Article
저널명
International Journal of Multiphase Flow
권
188