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Potentiometric titration, neutralization oxidation-reduction

Potentiometric titration can determine the end point more accurately than the color indicators. Thus, the quantitative consumption of a titrant in an acid-base neutralization, oxidation-reduction reaction, or complex formation reaction can be determined precisely and very accurately by potentiometric titration. The titration involves the addition of large increments of the titrant to a measured volume of the sample at the initial phase and, thereafter, adding smaller and smaller increments as the end point approaches. The cell potential is recorded... [Pg.77]

Among them, volumetric methods are presumably the most widely used for water analysis. They are titrimetric techniques which involve a chemical reaction between a precise concentration of a reagent or titrant and an accurately known volume of sample. The most common types of reactions as used within this method are acid-base neutralization, oxidation-reduction, precipitation, and complexation. The use of an indicator which identifies the equivalence point is required to develop this kind of method. The modem laboratories usually employ automated endpoint titrators, which largely improve the efficiency and reliability of the determination. Moreover, spectrophotometric, potentiometric, or amperometric methods to determine the endpoint of the reaction can... [Pg.282]


See other pages where Potentiometric titration, neutralization oxidation-reduction is mentioned: [Pg.382]    [Pg.1693]    [Pg.405]    [Pg.497]    [Pg.497]    [Pg.397]    [Pg.463]    [Pg.1175]    [Pg.5788]    [Pg.500]    [Pg.286]    [Pg.197]   
See also in sourсe #XX -- [ Pg.285 ]




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Neutral oxides

Neutralization titrations

Oxidative titration

Potentiometric

Potentiometric titrations

Reductive titrations

Titration oxidants

Titration oxidation-reduction titrations

Titration reductants

Titration, potentiometric oxidation-reduction

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