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首页> 外文期刊>Chemical Engineering Science >Residence time distribution measurements in an external-loop airlift reactor: Study of the hydrodynamics of the liquid circulation induced by the hydrogen bubbles
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Residence time distribution measurements in an external-loop airlift reactor: Study of the hydrodynamics of the liquid circulation induced by the hydrogen bubbles

机译:外环空运反应堆中的停留时间分布测量:氢气泡引起的液体循环的流体动力学研究

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A detailed study of the residence time distribution (RTD) analysis of liquid phase has been performed in an external-loop airlift reactor of 20. L nominal volume, regarded as a global unit and discriminating its different sections (riser, gas-liquid separator and downcomer) using the tracer response technique. The reactor was used as an electrochemical reactor in order to carry out the electrocoagulation/electroflotation (EC/EF). The gas phase created in the riser is the hydrogen produced by water electrolysis. In order to use this reactor for a continuous EC/EF, hydrodynamic studies were carried out to control the operating conditions and to help modelling the electrocoagulation. Current density, position of the electrodes in the riser and the volumetric liquid flow (inlet flow) are the key parameters for the hydrodynamics. The experimental results revealed that both in the downcomer and the riser-separator zones, the flow model is axial dispersion. Interesting results were obtained:. -The superficial liquid velocity (U_(Ld)) at the downcomer, decreased when the volume inlet flow increased (0
机译:已在标称容积为20升的外环空运反应堆中对液相的停留时间分布(RTD)分析进行了详细研究,该反应堆被视为一个整体并区分其不同部分(立管,气液分离器和降液管)使用示踪剂响应技术。该反应器用作电化学反应器以便进行电凝/电浮选(EC / EF)。提升管中产生的气相是水电解产生的氢气。为了将该反应器用于连续的EC / EF,进行了流体动力学研究,以控制操作条件并帮助对电凝建模。电流密度,立管中电极的位置以及液体的体积流量(入口流量)是流体力学的关键参数。实验结果表明,在下降管区和上升管-分离器区,流动模型均为轴向扩散。获得了有趣的结果。 -降液管处的表面液体速度(U_(Ld)),当体积入口流量增加(0

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