The methods for the determinations of dissociation or protonation constant and ion exchange equilibrium constant for weakly dissociating ion exchange resin and hydrous oxide by means of potentiometric titration are presented in this paper. The weakly acidic cation exchange resin and basic anion exc
Potentiometric titration of ion exchangers
โ Scribed by V.S. Soldatov
- Publisher
- Elsevier Science
- Year
- 1998
- Tongue
- English
- Weight
- 805 KB
- Volume
- 38
- Category
- Article
- ISSN
- 1381-5148
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โฆ Synopsis
Theoretical works on potentiometric titration of ion exchangers are reviewed. Most attention is paid to the approach
considering this process as a specific case of ion exchange between H or OH and the counterions of the titrant, M or z 2
A , accompanied by the neutralization reaction. An equation connecting the most important properties of the ion exchanger-solution system (pH, concentration of the electrolyte in the solution phase and degree of neutralization of the ion exchanger) named 'acidity function' is discussed in detail. Practical methods for determination and use of a set of its three constants, sufficient for calculation of ionic equilibria in ion-exchange systems (parameters of acidic-basic strength of ion exchangers), are described and illustrated with experimental examples. The acidity function is used for computer simulation of potentiomertic titration curves of ion exchangers to observe the influence of different factors on position and shape of the potentiometric titration curves and chose the best possible conditions for observing the inflection points. The physical meaning of the constants of the modified Henderson-Hasselbach equation are discussed and their relations with the parameters of acidic-basic strength of ion exchangers are expressed in the quantitative form.
๐ SIMILAR VOLUMES
We calculated the characteristics of a phosphoric cation exchanger and studied an accurately computable method for ion exchange capacity for a type of potentiometric titration curve. The ion exchanger was prepared by phosphorylation of a styrene-divinylbenzene copolymer. The ion exchange capacity wa