Adsorption of poly (4-sodium styrene sulfonate) on kaolinite clays
The adsorption of polymer on clay particles has great importance in many industrial applications. This work aimed to study the adsorption of anionic polymer, poly (4‐sodium styrene sulfonate), on kaolinite clay surfaces. Three different Egyptian kaolinite clay samples were used. The kaolinite clays...
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Published in | Journal of applied polymer science Vol. 100; no. 3; pp. 1712 - 1719 |
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Abstract | The adsorption of polymer on clay particles has great importance in many industrial applications. This work aimed to study the adsorption of anionic polymer, poly (4‐sodium styrene sulfonate), on kaolinite clay surfaces. Three different Egyptian kaolinite clay samples were used. The kaolinite clays were saturated with sodium or calcium cation. It was found that the Freundlich isotherm is applicable for this polymer adsorption on kaolinite. The parameters of the Freundlich equation are very close, indicating a comparable nature for the binding behavior between the different samples of kaolinite and the adsorbed polymer. The adsorption process was examined at different pH values (3, 6, and 9 ± 0.1) to cover the range below and above the point of zero charge of kaolinite surfaces. It was found that, below this point, the polymer adsorption increased, while above it the polymer adsorption decreased. The polymer adsorption on calcium kaolinite was higher than that of sodium kaolinite at the same pH value. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 100: 1712–1719, 2006 |
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AbstractList | Abstract
The adsorption of polymer on clay particles has great importance in many industrial applications. This work aimed to study the adsorption of anionic polymer, poly (4‐sodium styrene sulfonate), on kaolinite clay surfaces. Three different Egyptian kaolinite clay samples were used. The kaolinite clays were saturated with sodium or calcium cation. It was found that the Freundlich isotherm is applicable for this polymer adsorption on kaolinite. The parameters of the Freundlich equation are very close, indicating a comparable nature for the binding behavior between the different samples of kaolinite and the adsorbed polymer. The adsorption process was examined at different pH values (3, 6, and 9 ± 0.1) to cover the range below and above the point of zero charge of kaolinite surfaces. It was found that, below this point, the polymer adsorption increased, while above it the polymer adsorption decreased. The polymer adsorption on calcium kaolinite was higher than that of sodium kaolinite at the same pH value. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 100: 1712–1719, 2006 The adsorption of polymer on clay particles has great importance in many industrial applications. This work aimed to study the adsorption of anionic polymer, poly (4‐sodium styrene sulfonate), on kaolinite clay surfaces. Three different Egyptian kaolinite clay samples were used. The kaolinite clays were saturated with sodium or calcium cation. It was found that the Freundlich isotherm is applicable for this polymer adsorption on kaolinite. The parameters of the Freundlich equation are very close, indicating a comparable nature for the binding behavior between the different samples of kaolinite and the adsorbed polymer. The adsorption process was examined at different pH values (3, 6, and 9 ± 0.1) to cover the range below and above the point of zero charge of kaolinite surfaces. It was found that, below this point, the polymer adsorption increased, while above it the polymer adsorption decreased. The polymer adsorption on calcium kaolinite was higher than that of sodium kaolinite at the same pH value. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 100: 1712–1719, 2006 |
Author | Sadek, O. M. Assaad, F. F. Mostafa, B. A. Mekhemer, W. K. |
Author_xml | – sequence: 1 givenname: O. M. surname: Sadek fullname: Sadek, O. M. organization: Institute of Graduate Studies & Research, Alexandria University, 163 Horreya Avenue, P.O. Box 832, Shatby 21526, Alexandria, Egypt – sequence: 2 givenname: W. K. surname: Mekhemer fullname: Mekhemer, W. K. organization: Institute of Graduate Studies & Research, Alexandria University, 163 Horreya Avenue, P.O. Box 832, Shatby 21526, Alexandria, Egypt – sequence: 3 givenname: F. F. surname: Assaad fullname: Assaad, F. F. organization: National Research Center, Cairo, Egypt – sequence: 4 givenname: B. A. surname: Mostafa fullname: Mostafa, B. A. organization: Institute of Graduate Studies & Research, Alexandria University, 163 Horreya Avenue, P.O. Box 832, Shatby 21526, Alexandria, Egypt |
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Keywords | Clay adsorption kaolinite clay Liquid solid adsorption Adsorption isotherm Particle suspension Experimental study polystyrene sulfonate Polyelectrolyte Flocculation reagent Flocculation Concentration effect Styrenesulfonate polymer pH Kaolinite Aqueous solution |
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Snippet | The adsorption of polymer on clay particles has great importance in many industrial applications. This work aimed to study the adsorption of anionic polymer,... Abstract The adsorption of polymer on clay particles has great importance in many industrial applications. This work aimed to study the adsorption of anionic... |
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SubjectTerms | adsorption Applied sciences Exact sciences and technology flocculation kaolinite clay Organic polymers Physicochemistry of polymers polystyrene sulfonate Properties and characterization Solution and gel properties |
Title | Adsorption of poly (4-sodium styrene sulfonate) on kaolinite clays |
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