Adsorption of phenol and nonylphenol from aqueous solutions on microporous activated carbons has been studied. The phenol isotherm changes from L-shaped for surface oxygen group free carbon (I sample) to a two-stepped isotherm for oxidized carbon (IN sample, HNO(3) treated) Furthermore, the adsorbed
The Effect of Zeta Potential of Activated Carbon on the Adsorption of Dyes from Aqueous Solution: I. The Adsorption of Cationic Dyes: Methyl Green and Methyl Violet
✍ Scribed by Minguang Dai
- Publisher
- Elsevier Science
- Year
- 1994
- Tongue
- English
- Weight
- 238 KB
- Volume
- 164
- Category
- Article
- ISSN
- 0021-9797
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✦ Synopsis
The effect of the zeta ((\zeta)) potential of activated carbon on the adsorption of cationic dyes from aqueous solution has been studied. The (\mathrm{pH}_{\mathrm{zpc}}) of the zero-point charge of activated carbon has been measured by microelectrophoresis. Plots of saturated amount adsorbed for methyl green and methyl violet on activated carbon versus zeta potential have also been determined. The results show that the electrostatic interaction between cationic dyes and the surface of activated carbon has a great effect on adsorption capacity. When the zeta potential of activated carbon is lower than (-30 \mathrm{mV}), the electrostatic attraction between cationic dyes and the carbon surface greatly increases the adsorption capacity. However, when the potential of activated carbon is between -30 and (+60 \mathrm{mV}) the electrostatic force between dyes and the carbon surface is diminished and the adsorption capacity of activated carbon is approximately unchanged. The capacity is significantly reduced due to the electrostatic repulsion between cationic dyes and the carbon surface when the zeta potential is higher than (+60 \mathrm{mV}). The adsorption kinetic and thermodynamic parameters as functions of (\mathrm{pH}) have been determined. The mechanism for adsorption of cationic dyes on activated carbon has also been studied. (1) 1994 Academic Press, Inc.
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