Bubble size in aerated stirred tanks

被引:133
|
作者
Alves, SS [1 ]
Maia, CI
Vasconcelos, JMT
Serralheiro, AJ
机构
[1] Univ Tecn Lisboa, Dept Chem Engn, Ctr Engn Biol & Quim, Inst Super Tecn, P-1049001 Lisbon, Portugal
[2] Univ Tecn Lisboa, Dept Electrotech Engn & Comp, Inst Super Tecn, P-1049001 Lisbon, Portugal
关键词
bubble size; aerated stirred tanks; gas-liquid mass transfer;
D O I
10.1016/S1385-8947(02)00008-6
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Local average bubble size in a dual turbine stirred tank is investigated. Results ate compared with data from the literature, obtained under many different conditions, including different types and numbers of stirrers, different media and measuring systems. For Rushton turbines, bubble size increases from the stirrer tip along the discharge stream, soon to reach a value representative of the bulk of the tank, near the tank wall. This is common to coalescing and non-coalescing systems. Differences in d(32) cannot be clearly attributed to size of tank, number or type of stirrers or measuring method. Dispersion within each author's data is at least as significant as the differences between authors. Bubble sizes in electrolyte solutions are smaller and more sensitive to power input than in water. Surfactant addition results in a further decrease in bubble size. Data may be correlated by d(32) = C"(P-g/V)(beta) with exponent beta decreasing from (-0.52) near turbine to (-0.37) bulk for non-coalescing media and from (-0.24) near turbine to (-0.14) bulk for coalescing media. The effect of gas flowrate on d(32) is not detectable, except near the turbine for coalescing media. To correlate data under the se conditions, the effect of gas loading must be included. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:109 / 117
页数:9
相关论文
共 50 条
  • [31] Experimental and numerical study of gas hold-up in surface aerated stirred tanks
    Sun, Haiyan
    Mao, Zai-Sha
    Yu, Gengzhi
    CHEMICAL ENGINEERING SCIENCE, 2006, 61 (12) : 4098 - 4110
  • [32] Sound measurement as a means of gas-bubble sizing in aerated agitated tanks
    Boyd, JWR
    Varley, J
    AICHE JOURNAL, 1998, 44 (08) : 1731 - 1739
  • [33] Bubble dynamics and deformation of free liquid surface in aerated liquid storage tanks
    Sarath, Subhashini Raj
    Jayakumar, Janardanan Sarasamma
    KOREAN JOURNAL OF CHEMICAL ENGINEERING, 2021, 38 (04) : 716 - 735
  • [34] Bubble dynamics and deformation of free liquid surface in aerated liquid storage tanks
    Subhashini Raj Sarath
    Janardanan Sarasamma Jayakumar
    Korean Journal of Chemical Engineering, 2021, 38 : 716 - 735
  • [35] Characterization of hydromechanical stress in aerated stirred tanks up to 40 m3 scale by measurement of maximum stable drop size
    Daub, Andreas
    Boehm, Marina
    Delueg, Stefanie
    Muehlmann, Markus
    Schneider, Gerhard
    Buechs, Jochen
    JOURNAL OF BIOLOGICAL ENGINEERING, 2014, 8
  • [36] Characterization of hydromechanical stress in aerated stirred tanks up to 40 m3 scale by measurement of maximum stable drop size
    Andreas Daub
    Marina Böhm
    Stefanie Delueg
    Markus Mühlmann
    Gerhard Schneider
    Jochen Büchs
    Journal of Biological Engineering, 8
  • [37] Effects of baffle design on the fully baffled condition in aerated stirred tanks with Rushton turbine impeller
    Dept of Chemical Engineering, National Taiwan University, Taipei 107, Taiwan
    J Chin Inst Chem Eng, 1 (69-72):
  • [38] APPLICATION OF HOT-FILM ANEMOMETRY TO AIR-WATER FLOW IN AERATED STIRRED TANKS
    LU, WM
    JU, SJ
    CHEMICAL ENGINEERING COMMUNICATIONS, 1987, 56 (1-6) : 57 - 75
  • [39] Effects of baffle design on the fully baffled condition in aerated stirred tanks with Rushton turbine impeller
    Lu, WM
    Wu, HZ
    Tsai, FY
    Wang, CY
    JOURNAL OF THE CHINESE INSTITUTE OF CHEMICAL ENGINEERS, 1997, 28 (01): : 69 - 72
  • [40] Flow Patterns of Multiple Axial-Radial Impellers for Potential Use in Aerated Stirred Tanks
    Posadas-Navarro, David
    Palacios, Carlos
    Blancas-Cabrera, Abel
    Trujillo-Roldan, Mauricio A.
    Salinas-Vazquez, Martin
    Ascanio, Gabriel
    CHEMICAL ENGINEERING & TECHNOLOGY, 2022, 45 (05) : 860 - 867