Nothing Special   »   [go: up one dir, main page]

Pandit, 2023 - Google Patents

Multiphase Phenomena and Design of Gas-Solid-Liquid Stirred Tanks

Pandit, 2023

Document ID
17927506335110019954
Author
Pandit A
Publication year
Publication venue
Handbook of Multiphase Flow Science and Technology

External Links

Snippet

Mechanically stirred reactors using single or multiple traditional impeller systems are extensively utilized in the chemical industry for different mixing processes such as crystallization, fermentation, hydrogenation, and so on. The proposed chapter analyzes prior …
Continue reading at link.springer.com (other versions)

Similar Documents

Publication Publication Date Title
Kasat et al. Review on mixing characteristics in solid‐liquid and solid‐liquid‐gas reactor vessels
Gogate et al. Multiple-impeller systems with a special emphasis on bioreactors: a critical review
Rewatkar et al. Critical impeller speed for solid suspension in mechanically agitated three-phase reactors. 1. Experimental part
Zhu et al. Mixing studies in a model aerated bioreactor equipped with an up-or a down-pumping ‘Elephant Ear’agitator: Power, hold-up and aerated flow field measurements
Buurman et al. Scaling-up rules for solids suspension in stirred vessels
Atiemo‐Obeng et al. Solid–liquid mixing
Bouaifi et al. Power consumption, mixing time and homogenisation energy in dual-impeller agitated gas–liquid reactors
Tamburini et al. Solid–liquid suspensions in top-covered unbaffled vessels: influence of particle size, liquid viscosity, impeller size, and clearance
Wang et al. Energy efficient solids suspension in an agitated vessel–water slurry
Jafari et al. A comprehensive review of just suspended speed in liquid-solid and gas-liquid-solid stirred tank reactors
Zheng et al. Improving oxygen transfer efficiency by developing a novel energy-saving impeller
Nienow et al. Recent studies on agitated three-phase (gas–solid–liquid) systems in the turbulent regime
Zhang et al. Mass transfer in gas–liquid stirred reactor with various triple-impeller combinations
Gao et al. Void fraction distribution in sparged and boiling reactors with modern impeller configuration
Thring et al. An experimental investigation into the complete suspension of floating solids in an agitated tank
Delbridge et al. Power, mixing and flow dynamics of the novel Allegro™ stirred tank reactor
Davoody et al. Agitation energy efficiency in gas–solid–liquid stirred vessels operating at ultra-high solids concentrations
Birch et al. The influence of sparger design and location on gas dispersion in stirred vessels
Pandit Multiphase Phenomena and Design of Gas-Solid-Liquid Stirred Tanks
Yang et al. Solid-liquid suspension in a stirred tank driven by an eccentric-shaft: Electrical resistance tomography measurement
Ibrahim et al. The effect of viscosity on particle suspension in an aerated stirred vessel with different impellers and bases
Labík et al. Scale-up and viscosity effects on gas–liquid mass transfer rates in unbaffled stirred tanks
Boon et al. Comparing a range of impellers for “stirring as foam disruption”
BROWN et al. Solid–liquid mixing
Petříček et al. Gas-liquid mass transfer rates in unbaffled tanks stirred by PBT: scale-up effects and pumping direction.