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- W3025741145 endingPage "107943" @default.
- W3025741145 startingPage "107943" @default.
- W3025741145 abstract "As a continuous phase, fluid creates a specific environment for the whole flotation process, and accordingly play important roles. This paper aims to characterize the fluid intensification effects on three–phase interactions, which closely relate to turbulent dissipation. Generally, the turbulence comprises distinct vortices, wherein macroturbulence dominates transport phenomena; intermediate eddies are responsible for energy redistribution; and small–scale vortices regulate micro–interactions. This review indicates that the strengthening effects of agitated flows on uniform mixing, interparticle and particle–reagent interactions contribute to the hydrophobicity improvement of desired particles. Further, the focus transfers to bubble distribution and behavior. Turbulence can strongly affect the bubble evolution process by imposing external stresses and inducing relative motion in them, thereby creating reasonably balanced bubble distributions for successive stages. Theoretically, the optimized hydrodynamic environment corresponds to the maximized particle–bubble collision efficiency, and provides sufficient kinetic energy for particles to break the energy barrier of attachment. Though the mineralized bubbles are vulnerable to the surrounding fluid, a modulated hydrodynamic environment can be oriented at detaching inferior particles and improving flotation selectivity. Critically, turbulent conditions should be designed to accommodate the actual situation, and some available theories on modelling particle–bubble interactions require further modification." @default.
- W3025741145 created "2020-05-21" @default.
- W3025741145 creator A5001884850 @default.
- W3025741145 creator A5032583833 @default.
- W3025741145 creator A5034746502 @default.
- W3025741145 creator A5082003032 @default.
- W3025741145 creator A5087680712 @default.
- W3025741145 creator A5088291390 @default.
- W3025741145 date "2020-06-01" @default.
- W3025741145 modified "2023-10-18" @default.
- W3025741145 title "Intensification effects of stirred fluid on liquid–solid, gas–liquid and gas–solid interactions in flotation: A review" @default.
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