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Gas bubble evolution on transparent electrode during water electrolysis in a magnetic field

机译:磁场中水电解过程中透明电极上的气泡逸出

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摘要

Alkaline water electrolysis was operated in a magnetic field and oxygen gas evolution was observed form the back side of a transparent glass electrode. The projection images clearly demonstrated the nucleation sites, bubble growth and motion on the electrode. Gas bubbles evolved in no magnetic field could stay at the nucleation site without any detachments until natural convection (pumping effect) was developed. On the other hand in a magnetic field, they were flushed away by the magnetohydrodynamics (MHD) convection as soon as they were nucleated at more than 1 T and their nucleation number decreased with increasing in the magnetic field intensity. The bubble motion in a magnetic field reflected the rising velocity accelerated by MHD convection. These results suggested that a magnetic field caused remarkable improvement of the surface coverage of the electrode.
机译:碱性水电解在磁场中进行,从透明玻璃电极的背面观察到有氧气逸出。投影图像清楚地显示了电极上的成核位置,气泡生长和运动。在无磁场的情况下产生的气泡可以留在成核位置而没有任何分离,直到形成自然对流(泵浦效应)为止。另一方面,在磁场中,一旦它们在超过1 T的温度下成核,它们就会被磁流体动力学(MHD)对流冲刷掉,并且它们的成核数随磁场强度的增加而减少。磁场中的气泡运动反映了通过MHD对流加速的上升速度。这些结果表明,磁场引起电极表面覆盖率的显着提高。

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