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The study of surface processes under electrochemical control in the presence of inertial cavitation

机译:惯性空化作用下电化学控制下的表面过程研究

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摘要

In some circumstances, the erosive effects of inertial (transient) cavitation have been usefully employed in the acceleration of chemical processes that are dependent on surface reactions. However, in other situations the erosion of materials can be detrimental. For example, problematic erosion/corrosion phenomena have been well documented. It will be demonstrated here that the employment of inertial cavitation can be beneficial to the study of surface processes and indeed has a number of advantages. These include rapid erosion and the removal of small quantities of the surface. To highlight these effects, high-temporal resolution of the re-oxidation transients produced from a passivated microelectrode placed within a cavitation cloud will be reported. These will be compared to the multi bubble sonoluminescence (MBSL) output of the cell.
机译:在某些情况下,惯性(瞬态)气蚀的侵蚀作用已被有效地用于加速依赖于表面反应的化学过程。但是,在其他情况下,材料的侵蚀可能是有害的。例如,已经很好地记录了有问题的腐蚀/腐蚀现象。在此将证明惯性空化的使用可能有益于表面过程的研究,并且确实具有许多优势。这些包括快速侵蚀和去除少量表面。为了突出这些效果,将报告由空化云内的钝化微电极产生的再氧化瞬态的高温分解。这些将与电池的多气泡声致发光(MBSL)输出进行比较。

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