Chinese Journal of Chemical Engineering ›› 2012, Vol. 20 ›› Issue (4): 693-700.

• 催化、动力学与反应器 • 上一篇    下一篇

高气液化下分布器设计对结构化床层气液分布的影响

周媛1; AL-DAHHAN M.2; DUDUKOVIC M.3; 刘辉1   

  1. 1 Beijing University of Chemical Technology, Beijing 100029, China 2 Missouri University of Science and Technology, Rolla, MO 65409, USA 3 Washington University in St. Louis, MO 63130, USA
  • 收稿日期:2011-12-11 修回日期:2012-06-21 出版日期:2012-08-28 发布日期:2012-06-21

Effect of distributor design on gas-liquid distribution in monolithic bed at high gas/liquid ratios

ZHOU Yuan1; AL-DAHHAN M.2; DUDUKOVICB M.3; LIU Hui1   

  1. 1 Beijing University of Chemical Technology, Beijing 100029, China 2 Missouri University of Science and Technology, Rolla, MO 65409, USA 3 Washington University in St. Louis, MO 63130, USA
  • Received:2011-12-11 Revised:2012-06-21 Online:2012-08-28 Published:2012-06-21

摘要: Experiments were carried out to investigate the liquid flow distribution at high gas/liquid ratios in a cold model monolith bed of a 0.048 m diameter with 62 cells per cm2. Three types of distributor for the liquid distribution were used to evaluate their distribution performance. Local liquid saturation in individual channels was measured using 16 single-point optical fiber probes mounted inside the channels. The results indicate that 1) The optical fiber probe technique can measure phase distribution in the monolith bed; 2) Liquid saturation distribution along the radial direction of the monolith bed is not uniform and the extent of non-uniformity depends on the distributor design and phase velocities; and 3) The tube array distributor provides superior liquid distribution performance over the showerhead and nozzle distributors.

关键词: monolith reactor, phase distribution, optical fiber probe, liquid saturation

Abstract: Experiments were carried out to investigate the liquid flow distribution at high gas/liquid ratios in a cold model monolith bed of a 0.048 m diameter with 62 cells per cm2. Three types of distributor for the liquid distribution were used to evaluate their distribution performance. Local liquid saturation in individual channels was measured using 16 single-point optical fiber probes mounted inside the channels. The results indicate that 1) The optical fiber probe technique can measure phase distribution in the monolith bed; 2) Liquid saturation distribution along the radial direction of the monolith bed is not uniform and the extent of non-uniformity depends on the distributor design and phase velocities; and 3) The tube array distributor provides superior liquid distribution performance over the showerhead and nozzle distributors.

Key words: monolith reactor, phase distribution, optical fiber probe, liquid saturation