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Corrosion mechanism 184 Double electric layer

The basic mechanism of passivation is easy to understand. When the metal atoms of a fresh metal surface are oxidised (under a suitable driving force) two alternative processes occur. They may enter the solution phase as solvated metal ions, passing across the electrical double layer, or they may remain on the surface to form a new solid phase, the passivating film. The former case is active corrosion, with metal ions passing freely into solution via adsorbed intermediates. In many real corrosion cases, the metal ions, despite dissolving, are in fact not very soluble, or are not transported away from the vicinity of the surface very quickly, and may consequently still... [Pg.126]

The previous section discussed the structure at the junction of two phases, the one a solid electron conductor, the other an ionic solution. Why is this important Knowledge of the structure of the interface, the distribution of particles in this region, and the variation of the electric potential in the double layer, permits one to control reactions occurring in this region. Control of these reactions is important because they are the foundation stones of important mechanisms linked to the understanding of industrial processes and problems, such as deposition and dissolution of metals, corrosion, electrocatalysis, film formation, and electro-organic synthesis. [Pg.65]

The electric double layer (edl) is fundamental for electrochemistry because the rate and mechanism of the various electrochemical reactions (hydrogen evolution, corrosion and corrosion inhibition by surfactants, metal deposition and dissolution, and so forth) depend on the... [Pg.188]


See other pages where Corrosion mechanism 184 Double electric layer is mentioned: [Pg.1004]    [Pg.217]    [Pg.172]    [Pg.72]    [Pg.428]    [Pg.1033]    [Pg.481]    [Pg.284]    [Pg.619]   
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