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A two-phase flow model for hydrogen evolution in an electrochemical cell

机译:电化学电池中析氢的两相流模型

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摘要

Hydrogen evolution, flow field and current density distribution in an electrochemical cell are investigated with a two-phase flow model. The mathematical model involves solutions of transport equations for the variables of each phase with allowance for inter-phase transfer of mass and momentum. The buoyancy force generated due to density difference between two phases modifies flow profile and increases fluid velocity at the vicinity of the electrode. The current density decreases over the electrode mainly because of the decrease in effective conductivity of electrolyte. It is found that the hydrogen generation significantly increases at higher electrolyte flow by reducing the residence time of bubbles over the electrode. The predicted results satisfactorily agree with data available in the literature.
机译:用两相流模型研究了电化学电池中的氢析出,流场和电流密度分布。该数学模型涉及每个相变量的输运方程式的解,并考虑了质量和动量的相间传递。由于两相之间的密度差而产生的浮力会改变流量分布并增加电极附近的流体速度。电极上的电流密度降低主要是由于电解质的有效电导率降低。发现通过减少气泡在电极上的停留时间,在较高的电解质流量下,氢气的产生显着增加。预测结果与文献中的数据令人满意。

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