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Intensification of rate of diffusion controlled reactions in a parallel plate electrochemical reactor stirred by a curtain of electrochemically generated gas bubbles

机译:平行板电化学反应器中扩散控制反应速率的增强,由电化学产生的气泡幕搅拌

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Rates of mass transfer were measured at a vertical plate stirred by a rising curtain of oxygen bubbles generated electrochemically at an upstream plate by measuring the limiting current of the cathodic reduction of K3Fe(CN)(6) in alkaline solution. The rate of mass transfer was found to increase over the natural convection value by a factor ranging from 2.4 to 25 compared to the previously reported range of 2-5 in the case of copper deposition from acidified solutions. The high tendency of oxygen bubbles to coalesce in alkaline solutions is believed to be responsible for the high rates of mass transfer in alkaline solutions. The rate of mass transfer at a plate stirred by a curtain of oxygen bubbles was found to decrease with increasing plate height and electrolyte concentration. Curtains of H-2 bubbles were found to be less effective in enhancing the rate of mass transfer compared to that of oxygen. Practical application of the results in designing a modified parallel plate electrochemical reactor stirred by a counterelectrode gas curtain was highlighted. The suggested design has the potential of saving part or all of the mechanical stirring energy as well as floor space since it extends vertically.
机译:在垂直板上测量传质速率,该垂直板由上游板上电化学产生的氧气气泡的上升幕搅拌,通过测量碱性溶液中K3Fe(CN)(6)阴极还原的极限电流来测量。与先前报道的从酸化溶液中沉积铜的情况下的2-5相比,发现传质速率相对于自然对流值增加了2.4至25倍。人们认为,在碱性溶液中氧气泡聚结的可能性很高,这是造成碱性溶液中物质转移速率较高的原因。发现在通过氧气帘幕搅拌的板上的传质速率随着板高度和电解质浓度的增加而降低。发现与氧气相比,H-2气泡的窗帘在提高传质速率方面效果较差。结果的实际应用在设计改进的平行板电化学反应器的反电极气幕搅拌强调。建议的设计有可能节省部分或全部机械搅拌能量以及占地面积,因为它垂直延伸。

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