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Exact(49)
The dependence of the absorbance on pH shows that as the pH increases the protonation of the amino groups decreases.
This is also in agreement with the increasing difficulty in reducing the polymer as the pH increases.
Measurements performed as a function of pH in the range pH = 4 to pH = 10 indicate that the hydrogen peroxide decomposition reaction slows down as the pH increases.
It is observed that the limiting current density diminishes as the pH increases in a potential region where hydrogen peroxide is readily reduced.
As the pH increases from 0 to 2, the carboxyl groups begin to ionize, the proportion of the redox reaction between carbonyl and carboxyl groups is decreased, and the contribution of pseudocapacitance to the overall capacitance decreases too.
In the absence of ethylene glycol and ionic surfactant, the zeta potential of asphaltene is negative in the pH interval from 3.5 to 10.5, and its magnitude increases slightly as the pH increases.
Similar(11)
The ξ potential was below zero at all pH values tested and decreased as the pH increased.
The stability decreased as the pH increased, suggesting their lability to base-catalyzed hydrolysis.
The corrosion products changed from iron carbonate and sulfides to iron oxides as the pH increased.
As the pH increased from 4 to 12, the zeta potential decreased from Zp = 9.4 mV to Zp = −45.4 mV.
On the other hand, the negatively charged one, SPS, had a permeability that decreased as the pH increased.
More suggestions(15)
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com