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首页> 外文期刊>Electrochimica Acta >Bubble Over-Potential During Two-Phase Alkaline Water Electrolysis
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Bubble Over-Potential During Two-Phase Alkaline Water Electrolysis

机译:两相碱性水电解过程中气泡超电势

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During two-phase water electrolysis production of bubbles at one or both electrodes is observed. This leads to a change in the electrolyser electrical and hydrodynamic properties. When gravity is present, the production of bubbles at the electrodes induces a macro-convection in the electrolyser. This leads to a local distribution of the bubbles determining the local gas void fraction and current density at the electrodes. The absence of gravity eliminates the natural convection and buoyancy forces and consequently the frictional forces. It is generally difficult to estimate the quantitative influence of each of these single phenomena due to strong coupling. In the present work, alkaline water electrolysis is performed. The formation of gas bubbles at the anode is observed using four cameras. The aim of this study is to establish the quantitative evolution laws for the electrochemical cell potential, the bubble diameter and population density during alkaline (NaOH) two-phase electrolysis in function of the two explored inputs current density and gravity.
机译:在两相水电解期间,观察到在一个或两个电极处产生气泡。这导致电解器的电和流体力学性质的改变。当存在重力时,电极上产生的气泡会在电解槽中引起宏观对流。这导致气泡的局部分布,从而确定电极处的局部气体空隙率和电流密度。没有重力消除了自然对流和浮力,因此消除了摩擦力。由于强耦合,通常很难估计每个单一现象的量化影响。在本工作中,进行碱性水电解。使用四个照相机观察到阳极处的气泡形成。这项研究的目的是建立在碱性(NaOH)两相电解过程中,电化学电池的电势,气泡直径和密度的定量演化规律,这取决于所探索的两个输入电流密度和重力。

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