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Modelling and Measurement of Bubble Formation and Growth in Electroflotation Processes

机译:电浮过程中气泡形成和生长的建模和测量

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Electroflotation is used in the water treatment industry for the recovery of suspended particles. In this study the bubble formation and release of hydrogen bubbles generated electrolytically from a platinum cathode was investigated. Previously, it was found that both the growth rate and detachment diameter increased with increasing wire diameter. Conversely, current density had little effect on the released bubble size. It was also found that the detached bubbles rapidly increased in volume as they rose through the liquid as a result of decreasing hydrostatic pressure and high levels of dissolved hydrogen gas in the surrounding liquid. The experimental system was computationally modelled using a Lagrangian-Eulerian Discrete Particle approach. It was revealed that desorption of gaseous solutes from the electrolyte solution, other than hydrogen, may have a significant impact on the diameter variation of the formed bubbles. The simulation confirmed that liquid circulation, either forced or induced by the rising bubble plume, influences both the hydrogen supersaturation (concentration) in the neighbourhood of the electrode and the size of the resulting bubbles.
机译:电浮法在水处理行业中用于回收悬浮颗粒。在这项研究中,研究了气泡的形成和从铂阴极电解产生的氢气泡的释放。以前,发现随着线直径的增加,生长速率和分离直径都增加。相反,电流密度对释放的气泡尺寸影响很小。还发现,由于静水压力降低和周围液体中溶解的氢气含量高,当气泡通过液体上升时,气泡的体积迅速增加。实验系统使用拉格朗日-欧拉离散粒子方法进行计算建模。已经发现,除了氢以外,从电解质溶液中释放出气态溶质可能对所形成的气泡的直径变化具有显着影响。该模拟证实,由于上升的气泡羽流而迫使或引起的液体循环,会影响电极附近的氢过饱和度(浓度)以及所产生气泡的大小。

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