Effect of Bubble Surface Properties on Bubble-Particle Collision Efficiency in Froth Flotation

被引:7
|
作者
Li, Shuofu [1 ]
Jue, Kou [1 ]
Sun, Chunbao [1 ]
机构
[1] Univ Sci & Technol Beijing, Sch Civil & Resources Engn, Beijing 100083, Peoples R China
关键词
flotation cells; immobile and mobile bubble surface effects; bubble-particle collision efficiency;
D O I
10.3390/min10040367
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
In research on the particle-bubble collision process, due to the adsorption of surfactants and impurities (such as mineral particles, slime, etc.), most studies consider the bubble surface environment to be immobile. However, in the real situation of froth flotation, the nature of the bubble surface (degree of slip) is unknown. Mobile surface bubbles increase the critical thickness of the hydration film rupture between particles and bubbles, and enhance the collision between particles and bubbles. Sam (1996) showed that when the diameter of the bubble is large enough, a part of the surface of the bubble can be transformed into a mobile state. When the bubble rises in a surfactant solution, the surface pollutants are swept to the end of the bubble, so when the bubble reaches terminal velocity, the upper surface of the bubble is changed into a mobile surface. This paper analyzes the collision efficiency and fluid flow pattern of bubbles with mobile and immobile surfaces, and expounds the influence of surface properties on collision efficiency.
引用
收藏
页数:17
相关论文
共 50 条
  • [21] Isotropic turbulence surpasses gravity in affecting bubble-particle collision interaction in flotation
    Ngo-Cong, Duc
    Nguyen, Anh V.
    Tran-Cong, Thanh
    MINERALS ENGINEERING, 2018, 122 : 165 - 175
  • [22] BUBBLE-PARTICLE AGGREGATE DETACHMENT FORCES AND FLOTATION
    NISHKOV, I
    PUGH, RJ
    CIM BULLETIN, 1988, 81 (914): : 92 - 92
  • [23] Effect of negative inertial forces on bubble-particle collision via implementation of Schulze collision efficiency in general flotation rate constant equation
    Kouachi, Sabri
    Hassas, Behzad Vaziri
    Hassanzadeh, Ahmad
    Celik, Mehmet Sabri
    Bouhenguel, Mustapha
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2017, 517 : 72 - 83
  • [24] Experimental observations of bubble-particle collisional interaction relevant to froth flotation, and calculation of the associated forces
    Li, Shuofu
    Schwarz, M. Philip
    Yang, William
    Feng, Yuqing
    Witt, Peter
    Sun, Chunbao
    MINERALS ENGINEERING, 2020, 151
  • [25] Exact and approximate expressions for bubble-particle collision
    Heindel, TJ
    Bloom, F
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1999, 213 (01) : 101 - 111
  • [26] Force variations on particle induced by bubble-particle collision
    Hong, T
    Fan, LS
    Lee, DJ
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 1999, 25 (03) : 477 - 500
  • [27] Fundamental role of surface roughness in bubble-particle interaction in flotation: A review
    Zhao, Liang
    Zhou, Joe
    Zhang, Zhi-jun
    Liu, Qing-xia
    JOURNAL OF CENTRAL SOUTH UNIVERSITY, 2023, 30 (09) : 3021 - 3043
  • [28] The effect of hydrodynamic parameters on probability of bubble-particle collision and attachment
    Shahbazi, B.
    Rezai, B.
    Koleini, S. M. Javad
    MINERALS ENGINEERING, 2009, 22 (01) : 57 - 63
  • [29] The effect of energy input on bubble-particle collision, attachment, detachment, and collection efficiencies in a mechanical flotation cell
    Zhou, Ruoqian
    Li, Xiaoheng
    Li, Danlong
    Wang, Hainan
    Song, Zhicheng
    Yan, Xiaokang
    Zhang, Haijun
    POWDER TECHNOLOGY, 2025, 453
  • [30] Investigation of bubble-particle attachment interaction during flotation
    Zhou, You
    Albijanic, Boris
    Tadesse, Bogale
    Wang, Yuling
    Yang, Jianguo
    MINERALS ENGINEERING, 2019, 133 : 91 - 94