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The kinetic parameters of the transpassive dissolution process are thereby determined.
The role of organic frustule components, micro-organisms and faecal pellets in the dissolution process are discussed.
The influences of different proportions of calcium hypochlorite or benzenesulfonic acid sodium salt on the dissolution process are studied.
By establishing thermodynamic optimization model of the gas hydrate dissolution process based on entropy generation analysis, both the optimal control strategy and the optimal heating rate of the gas hydrate dissolution process are determined.
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The free energies, enthalpies and entropies for the adsorption and dissolution process were discussed in details.
The apparent energies, enthalpies and entropies of the dissolution process were discussed.
Positive value of ΔH * shows the zinc dissolution process is endothermic in nature.
The dissolution process was described as a three-step mechanism: detachment-, diffusion-, and disentanglement-controlled dissolution.
After the spin coating, the sample was annealed at 150°C for 1 min before the dissolution process is taken place.
As mentioned before, the dissolution process is mostly connected to electrostatic forces, van der Waals forces and hydrogen bond formation.
However, the dissolution process is suppressed when the film is formed from more concentrated chromate solutions.
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