2008Surface Engineering and Applied ElectrochemistryOpen access

Determination of acid-base properties of hcl acid activated palygorskite by potentiometric titration

N. Frini-Srasra, Ezzeddine Srasra

Open full text 17 citations

Abstract

The surface acidity of raw and acid activated palygorskite clay was studied by acid-base potentiometric titration. The Gran plot method was applied for the hydroxide titration, and the total surface sites (Hs) and the average number of protons reacted per surface site (Z) of the palygorskite samples at a given ionic strength were calculated. Acid treatment increases the clay acidity and modifies its surface charge. The point of zero charge value, which was determined by the common crossing point of Z vs. the pH curves performed at different ionic strengths, decreased from 8.8 to 3.5 with the acid treatment period. For illustrating the acidic characteristics of the treated and untreated palygorskite surface, three surface protonation models were tested: (a) the one site one pKa model, ≡SOH⇆≡SO−+H+; (b) the two sites two pKas model,≡SIOH⇆≡SIO−+H+ and SIIOH⇆≡SIIO−+ H+; and (c) the one site two pKa model,≡SOH⇆≡SO− + H+ and SOH + H+⇆≡SOH 2 + . The three surface protonation models sufficiently describe the surface properties and their evolution with the acid treatment.

About this research paper

What this paper is about

The surface acidity of raw and acid activated palygorskite clay was studied by acid-base potentiometric titration. The Gran plot method was applied for the hydroxide titration, and the total surface sites (Hs) and the average number of protons reacted per surface site (Z) of the palygorskite samples at a given ionic strength were calculated. Acid treatment increases the clay acidity and modifies its surface charge. The point of zero charge value, which was determined by the common crossing point of Z vs. the pH curves performed at different ionic strengths, decreased from 8.8 to 3.5 with the acid treatment period. For illustrating the acidic characteristics of the treated and untreated palygorskite surface, three surface protonation models were tested: (a) the one site one pKa model, ≡SOH⇆≡SO−+H+; (b) the two sites two pKas model,≡SIOH⇆≡SIO−+H+ and SIIOH⇆≡SIIO−+ H+; and (c) the one site two pKa model,≡SOH⇆≡SO− + H+ and SOH + H+⇆≡SOH 2 + . The three surface protonation models sufficiently describe the surface properties and their evolution with the acid treatment.

Why it matters

OpenAlex reports 17 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The surface acidity of raw and acid activated palygorskite clay was studied by acid-base potentiometric titration. The Gran plot method was applied for the hydroxide titration, and the total surface sites (Hs) and the average number of protons reacted per surface site (Z) of the palygorskite samples at a given ionic strength were calculated. Acid treatment increases the clay acidity and modifies its surface charge. The point of zero charge value, which was determined by the common crossing point of Z vs. the pH curves performed at different ionic strengths, decreased from 8.8 to 3.5 with the acid treatment period. For illustrating the acidic characteristics of the treated and untreated palygorskite surface, three surface protonation models were tested: (a) the one site one pKa model, ≡SOH⇆≡SO−+H+; (b) the two sites two pKas model,≡SIOH⇆≡SIO−+H+ and SIIOH⇆≡SIIO−+ H+; and (c) the one site two pKa model,≡SOH⇆≡SO− + H+ and SOH + H+⇆≡SOH 2 + . The three surface protonation models sufficiently describe the surface properties and their evolution with the acid treatment.

Key concepts: Potentiometric titration, Palygorskite, Titration, Base (topology), Chemistry, Acid–base titration, Environmental chemistry, Inorganic chemistry

Related papers

Back to paper searchBrowse research topicsOriginal source
Determination of acid-base properties of hcl acid activated palygorskite by potentiometric titration — Research Paper | ScholarLens