Studies in multiple impeller agitated gas-liquid contactors

被引:57
|
作者
Shewale, SD [1 ]
Pandit, AB [1 ]
机构
[1] Univ Bombay, Inst Chem Technol, Div Chem Engn, Bombay 400019, Maharashtra, India
关键词
gas-liquid contactor; multiple impeller system; flow patterns; mixing time; compartment model; exchange flow rate;
D O I
10.1016/j.ces.2005.04.078
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Experiments have been performed to study the effect of the density and the volume of the tracer pulse on the mixing time for two impeller combinations in the presence of gas in a 0.3 m diameter and I m tall cylindrical acrylic vessel. The tall multi-impeller aerobic fermenters, which require periodic dosing of nutrients that are in the form of aqueous solution, is a classic case under consideration. Conductivity measuring method was used to measure the mixing time. Two triple impeller combinations; one containing two pitched blade downflow turbines as upper impellers and disc turbine as the lowermost impeller (2 PBTD-DT) and another containing all pitched blade downflow turbines (3 PBTD) have been used. Other variables covered during experiments were the density and the amount of the tracer pulse, the impeller rotational speed and the gas superficial velocity. Fractional gas hold-up, Power consumption and mass transfer coefficient have also been measured for both the impeller combinations. Influence of aeration and impeller speed on the mixing time has been explained by the interaction of air induced and impeller generated liquid flows. Three different flow regimes have been distinguished to explain the hydrodynamics of the overall vessel (i.e., multiple impeller system). A compartment model with the number of compartments varying with the flow regimes have been used to model liquid phase mixing in these flow regimes. A correlation for the prediction of the dimensionless mixing time in the loading regime has been proposed in order to account the effect of the density and the amount of the tracer pulse on the mixing time. Correlations have also been proposed to predict fractional gas hold-up and k(L)a. (c) 2005 Elsevier Ltd. All rights reserved.
引用
收藏
页码:489 / 504
页数:16
相关论文
共 50 条
  • [41] Gas hold-up distribution and mixing time in gas-liquid stirred tanks
    Montante, Giuseppina
    Paglianti, Alessandro
    CHEMICAL ENGINEERING JOURNAL, 2015, 279 : 648 - 658
  • [42] Mixing time in a bath agitated simultaneously by bottom gas injection and side liquid injection
    Iguchi, M
    Sasaki, Y
    Kawabata, N
    Iwasaki, T
    MATERIALS TRANSACTIONS, 2004, 45 (07) : 2369 - 2376
  • [43] Fundamental data on the gas-liquid two-phase flow in minichannels
    Ide, Hideo
    Kariyasaki, Akira
    Fukano, Tohru
    INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2007, 46 (06) : 519 - 530
  • [44] Gas-liquid flow patterns in microgravity: Effects of tube diameter, liquid viscosity and surface tension
    Bousman, WS
    McQuillen, JB
    Witte, LC
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 1996, 22 (06) : 1035 - 1053
  • [45] Numerical Simulation on Gas-liquid Flow in Mechanical-Gas Injection Coupled Stirred System
    Shao, Pin
    Zhang, Ting-an
    Zhang, Zimu
    Liu, Yan
    ISIJ INTERNATIONAL, 2014, 54 (07) : 1507 - 1516
  • [46] EXPERIMENTAL INVESTIGATION OF UPWARD GAS-LIQUID FLOW IN A VERTICAL NARROW ANNULUS
    NAKORYAKOV, VE
    KUZNETSOV, VV
    VITOVSKY, OV
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 1992, 18 (03) : 313 - 326
  • [47] A Comparative CFD Study on Gas-Liquid Dispersion in A Stirred Tank with Low and High Gas Loadings
    Li Liangchao
    Chen Ning
    Xiang Kefeng
    Xiang Beiping
    INTERNATIONAL JOURNAL OF CHEMICAL REACTOR ENGINEERING, 2018, 16 (08)
  • [48] Effect of Gas Dispersion on Mixing Time of Liquid in an Agitated Vessel under Laminar Flow Condition
    Takahashi, Koji
    Ashino, Chihiro
    Takahata, Yasuyuki
    JOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 2015, 48 (06) : 403 - 406
  • [49] Hydrodynamics of the tridimensional rotational flow sieve tray in a countercurrent gas-liquid column
    Tang, Meng
    Zhang, Shaofeng
    Wang, Dewu
    Liu, Yan
    Zhang, Yishuo
    Wang, Hongkai
    Yang, Kun
    CHEMICAL ENGINEERING AND PROCESSING-PROCESS INTENSIFICATION, 2019, 142
  • [50] Hydrodynamic models of gas-liquid two-phase flow in porous media
    GFTUSB, Universidad Simón Bolívar, Apartado Postal 89000. Caracas, Venezuela
    Int. J. Multiphysics, 2013, 4 (339-351): : 339 - 351