...
首页> 外文期刊>Chemical Engineering Science >Multi-scale analysis of the influence of physicochemical parameters on the hydrodynamic and gas-liquid mass transfer in gas/liquid/solid reactors
【24h】

Multi-scale analysis of the influence of physicochemical parameters on the hydrodynamic and gas-liquid mass transfer in gas/liquid/solid reactors

机译:理化参数对气/液/固反应器中流体力学和气液传质的影响的多尺度分析

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The present paper reports an original, predominantly experimental study of the mass transfer efficiency in biofilters. Hydrodynamic and mass transfer parameters were investigated at two different scales. These parameters have been first considered (i) at a global scale in a three-phase fixed bed reactor with investigating the influence of the physic chemical properties of liquid phase and then (ii) from a local point of view by focusing at the bubble/packing contact. Experiments at global scale have been conducted in a semi-industrial scaled reactor (4.5m height, 0.15m in diameter) operating in batch mode, in co-current gas-liquid upflow. Air was injected at the bottom of the reactor through porous disc diffusers. Two kinds of packing, Meteor and Biolite, which have been thoroughly studied by Garcia-Maldonado et al. (2008), have been tested and compared. The impact of the liquid phase was investigated for different solutions containing clear water and some additives (salts, sugar, suspended solids and varied pH) that can be encountered in industry. For each liquid phase tested, gas holdup, pressure drop, slip velocities and bubble sizes were estimated, as well as volumetric mass transfer coefficients under different superficial gas velocities (ranging from 2.3×10~(-3)ms~(-1) to 2.9×10~(-2)ms~(-1)). For all the tested cases, variations in the hydrodynamic behavior were observed with increasing superficial gas velocity and with all the compounds added to the liquid phase. Mass transfer coefficients decreased with all the tested compounds except for low concentrations of salts, acid and basic solution. Local-scale experiments were performed in a 2D cell made of PMMA, with a height of 200mm, width of 100mm and thickness of 2mm, to investigate the visualization of mass transfer and hydrodynamics in the axial profile of bubbles rising through a fixed bed. A high speed camera was used with an oxygen sensitive dye to visualize oxygen transfer and Kalliroscope particles to visualize bubble hydrodynamics. A specific approach was proposed for estimating the mass transfer coefficient in such a configuration. It was found that the mass transfer coefficient k_L depended on bubble behavior through the packing. Low porosity of packing, bubble size and velocity were the principal parameters influencing the hydrodynamics and mass transfer coefficients at this scale.
机译:本文报道了生物滤池传质效率的原始,主要实验研究。在两个不同的尺度上研究了流体动力学和传质参数。首先,(i)在三相固定床反应器中以全球规模研究了这些参数,然后研究了液相的物理化学性质的影响,然后(ii)从局部角度着眼于气泡/包装接触。全球规模的实验已经在半工业规模的反应器(4.5m高,直径0.15m)中以分批方式进行,并流了气液两相流。通过多孔盘式扩散器将空气注入反应器的底部。 Garcia-Maldonado等人已对流星和生物岩这两种填料进行了深入研究。 (2008),已经过测试和比较。研究了液相对在工业中可能遇到的包含清水和一些添加剂(盐,糖,悬浮固体和不同pH值)的不同溶液的影响。对于每个测试的液相,估计了气体滞留率,压降,滑移速度和气泡大小,以及不同表观气体速度(范围为2.3×10〜(-3)ms〜(-1)至2.9×10〜(-2)ms〜(-1))。对于所有测试情况,观察到流体动力学行为随表观气体速度的增加以及所有化合物添加到液相中的变化。除低浓度的盐,酸和碱性溶液外,所有受试化合物的传质系数均降低。在由高200mm,宽100mm,宽2mm的PMMA制成的2D单元中进行了局部实验,以研究通过固定床上升的气泡轴向分布中的传质和流体动力学。高速相机与对氧敏感的染料一起使用以可视化氧气转移,并使用万花筒镜观察气泡的流体动力学。提出了一种特定的方法来估计这种配置下的传质系数。发现传质系数k_L取决于通过填料的气泡行为。填料的低孔隙率,气泡大小和速度是在此尺度下影响流体力学和传质系数的主要参数。

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