首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >CFD Prediction with Eulerian/Eulerian Approach of SO2 Absorption from Flue Gases in Bubble‑Dispersion Tower
【24h】

CFD Prediction with Eulerian/Eulerian Approach of SO2 Absorption from Flue Gases in Bubble‑Dispersion Tower

机译:燃气分散塔中烟气烟道气体的欧拉/欧拉峰接近欧拉/欧拉米菌的CFD预测

获取原文
获取原文并翻译 | 示例
       

摘要

Accurate prediction of SO_2 absorption efficiency under different physical and chemical parameters is of significant importance for desulfurization of the flue gas. In order to understand the mechanism of SO_2 absorption inside a bubble-dispersion tower, a three-dimensional twin Eulerian model together with two-film theory was applied to simulate the flue gas desulfurization processes in a bubble-dispersion tower. After comparing the predicted desulfurization efficiencies by using calculated gas holdup with the experimental parameters, the deviation of simulated model with the measured ones was small. Moreover, it was observed that the larger the fractional hole area, the better desulfurization performance. The bubble tower showed fine adaptability when the superficial gas velocity varies from 0.3 to 0.7 m/s. Also, there was a positive correlation between the SO_2 removal ability and the hydrogen ion concentration. Considering the crystallization of calcium sulfite, the PH of slurry tank inside bubble tower is recommended to be set between 5.5 and 6, and the initial CaCO_3 mass fraction is suggested to be set around 10–15% under prediction conditions. Moreover, the SO_2 absorption capability could be increased by lifting the initial liquid height, while the SO_2 removal efficiency would level off when tube insertion depth/column diameter H/D was over 0.128, so the H/D is suggested to be set from 0.08 to 0.128 to achieve high SO_2 absorption and avoid soil erosion. It was observed that the smaller the size of bubbles generated in the slurry, the higher SO_2 absorption efficiency could be.
机译:在不同的物理和化学参数下精确预测SO_2吸收效率对于烟道气的脱硫是显着的重要性。为了理解气泡分散塔内的SO_2吸收的机制,应用了三维双欧拉模型与双膜理论一起应用于模拟气泡分散塔中的烟道气脱硫过程。在通过使用实验参数使用计算的气体储气的计算的气体持有量进行比较预测的脱硫效率之后,模拟模型与测量的气体叠加的偏差小。而且,观察到,分数孔面积越大,脱硫性能越大。当浅表气体速度从0.3〜0.7米/秒变化时,气泡塔显示出精细的适应性。而且,SO_2去除能力与氢离子浓度之间存在正相关性。考虑到亚硫酸氢钙的结晶,建议在5.5和6之间设定气泡塔内的浆料罐的pH,并且初始CaCO_3质量分数被建议在预测条件下设定约为10-15%。此外,通过提升初始液体高度可以增加SO_2吸收能力,而当管插入深度/柱直径H / D超过0.128时,SO_2去除效率将降低,因此提出了H / D的设定为0.08达到0.128,以达到高SO_2吸收并避免土壤侵蚀。观察到浆料中产生的气泡尺寸越小,较高的SO_2吸收效率可能是。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号