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This may indicate that the decrease of the oxidation rate of the metal with higher extract concentrations corresponds to the relative drop in the corrosion rate.
In conclusion reactive elements have beneficial effects on the oxidation behaviour (decrease of the oxidation rate) as well as on the stability of the electrical conductivity as proved by the value of ASR parameter.
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Static oxidation tests of coated and uncoated samples at 700 and 800°C indicated a decrease in the oxidation rate by a factor of more than two orders of magnitude.
The results indicate that the addition of Re decreases the oxidation rate of NiCrAlY coatings.
In isolated human LDL, PRF caused a concentration-dependent inhibition of Cu2+-induced oxidative modifications, evidenced by the increasing of the lag phase of lipid peroxidation and decreasing in the oxidation rate (Vmax), moreover, the protein moieties from LDL were protected against Cu2+-induced oxidation.
The same coatings applied to (111 Ni, when incorporated into the oxide without the coarsening of CeO2 particles, decreased the oxidation rate to values as low as that predicted from the lattice diffusion of Ni in NiO.
Re addition decreases the oxidation rate of the coating and obviously improves the oxidation resistance of the aluminide coating.
The coating protects PC from solar radiation and decreases the oxidation rate and photo-yellowing of PC.
These agents protect DAn from the self-oxidation of DA, keeping the neurotransmitter away from the cell regions more vulnerable to oxidative stress and in an environment where the low pH decreases the oxidation rate.
At room temperature, the addition of diethylenetriaminopentaacetic acid (DTPA) led to a decrease of the transpassive oxidation rate, especially at pH 3. Conversely, the addition of DTPA to the pH 3 solution at 70 °C has been found to increase the transpassive oxidation rate.
High temperature oxidation of the coated substrates showed that La2O3 and Y2O3 coatings were highly effective in decreasing the oxidation rates of the porous supports, while CeO2 coatings were not found to be as effective for the protection of metallic substrates for metal-supported SOFCs.
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