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Bubble evolution and anode surface properties in aluminium electrolysis

机译:铝电解中的气泡演变和阳极表面性质

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摘要

One significant contribution to the anodic potential during aluminum electrolysis is the formation of CO2 bubbles that screen the anode surface. This effect creates an additional ohmic resistance as well as an increased reaction overpotential, hyperpolarization, as the effective surface area decreases. This work aims to improve the understanding of how anode properties - including isotropy at the optical domain level, wettability (toward electrolyte), surface roughness and porosity - affect bubble evolution. Pilot anodes, made with single source coke types varying in isotropy, were used to study bubble evolution by electrochemical methods. In order to retain bubbles during experiments, anodes were designed to have only horizontal surface area. Bubble formation and release were monitored at different current densities, and were tracked by measuring the oscillations in anode potential and series resistance. Anodes made from different cokes were found to have different bubble evolution properties, possibly due to variation in the density of nucleation sites at the surface of each anode and varying anode-electrolyte wettability.
机译:铝电解过程中对阳极电势的重要贡献是屏蔽阳极表面的CO2气泡的形成。当有效表面积减小时,这种效应会产生附加的欧姆电阻,并增加反应超电势,超极化。这项工作旨在增进对阳极性能(包括在光学域水平上的各向同性,润湿性(对电解质),表面粗糙度和孔隙率)如何影响气泡演变的理解。用具有各向同性变化的单源焦炭类型制成的先导阳极用于通过电化学方法研究气泡的演变。为了在实验期间保留气泡,将阳极设计为仅具有水平表面积。在不同的电流密度下监测气泡的形成和释放,并通过测量阳极电势和串联电阻的振荡进行跟踪。发现由不同焦炭制成的阳极具有不同的气泡产生特性,这可能是由于每个阳极表面的成核位点密度变化和阳极电解质润湿性变化所致。

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