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The dissolution process was described as a three-step mechanism: detachment-, diffusion-, and disentanglement-controlled dissolution.
The dissolution process was controlled by the bulk diffusion through the product layer crystals.
Visualization of the coating dissolution process was performed by confocal laser scanning microscopy using fluorescent markers in both layers.
The dissolution process was promoted by the generation of secondary permeability localized in columnar or pipe-like volumes.
During polarization, the formation of a black film which interferes with the subsequent dissolution process was found.
As a result, controlling stage of the overall rate of AISI 304 SS dissolution process was determined.
Similar(47)
However, the dissolution process is suppressed when the film is formed from more concentrated chromate solutions.
The kinetic parameters of the transpassive dissolution process are thereby determined.
At 25°C the dissolution process is surface reaction rate limited even at low disk rotation speeds.
Furthermore, the carbon dissolution process is observed in wet and dry CO2.
The dissolution process is mass transport controlled in all concentrations of sulfuric acid.
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