Influence of Cation-Exchanged Copper on the Adsorption of Phenol onto Zeolite Beta

The aim of this research was to examine the effect of copper cation-exchanged zeolites on the adsorption uptake of organic pollutants. Two beta zeolites with silica-to-alumina ratios of 25:1 and 150:1 were modified by copper cation exchange and their potential for the removal of phenol from aqueous...

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Main Authors: D. Smart, T. Curtin, T.F. O'Dwyer
Format: Article
Language:English
Published: SAGE Publishing 2014-08-01
Series:Adsorption Science & Technology
Online Access:https://doi.org/10.1260/0263-6174.32.8.635
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author D. Smart
T. Curtin
T.F. O'Dwyer
author_facet D. Smart
T. Curtin
T.F. O'Dwyer
author_sort D. Smart
collection DOAJ
description The aim of this research was to examine the effect of copper cation-exchanged zeolites on the adsorption uptake of organic pollutants. Two beta zeolites with silica-to-alumina ratios of 25:1 and 150:1 were modified by copper cation exchange and their potential for the removal of phenol from aqueous solutions was investigated. It was found that copper loading could be increased by increasing the pH of the exchange to 7. The exchanged copper was found to be relatively resistant to leaching between 5 and 11. An increase in copper loading or silica content resulted in an increase in the adsorption capacity of the zeolite for phenol. Overall, it was found that the adsorption showed best fit to the generalized Langmuir–Freundlich isotherm model. The adsorption process was exothermic and yielded thermodynamic parameters that were contiguous with phenol adsorption.
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institution Kabale University
issn 0263-6174
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publishDate 2014-08-01
publisher SAGE Publishing
record_format Article
series Adsorption Science & Technology
spelling doaj-art-91d60dd3e7264587b541eacf76bb2d0a2025-01-02T02:59:03ZengSAGE PublishingAdsorption Science & Technology0263-61742048-40382014-08-013210.1260/0263-6174.32.8.635Influence of Cation-Exchanged Copper on the Adsorption of Phenol onto Zeolite BetaD. Smart0T. Curtin1T.F. O'Dwyer2 Materials and Surface Science Institute, University of Limerick, Limerick, Ireland Materials and Surface Science Institute, University of Limerick, Limerick, Ireland Materials and Surface Science Institute, University of Limerick, Limerick, IrelandThe aim of this research was to examine the effect of copper cation-exchanged zeolites on the adsorption uptake of organic pollutants. Two beta zeolites with silica-to-alumina ratios of 25:1 and 150:1 were modified by copper cation exchange and their potential for the removal of phenol from aqueous solutions was investigated. It was found that copper loading could be increased by increasing the pH of the exchange to 7. The exchanged copper was found to be relatively resistant to leaching between 5 and 11. An increase in copper loading or silica content resulted in an increase in the adsorption capacity of the zeolite for phenol. Overall, it was found that the adsorption showed best fit to the generalized Langmuir–Freundlich isotherm model. The adsorption process was exothermic and yielded thermodynamic parameters that were contiguous with phenol adsorption.https://doi.org/10.1260/0263-6174.32.8.635
spellingShingle D. Smart
T. Curtin
T.F. O'Dwyer
Influence of Cation-Exchanged Copper on the Adsorption of Phenol onto Zeolite Beta
Adsorption Science & Technology
title Influence of Cation-Exchanged Copper on the Adsorption of Phenol onto Zeolite Beta
title_full Influence of Cation-Exchanged Copper on the Adsorption of Phenol onto Zeolite Beta
title_fullStr Influence of Cation-Exchanged Copper on the Adsorption of Phenol onto Zeolite Beta
title_full_unstemmed Influence of Cation-Exchanged Copper on the Adsorption of Phenol onto Zeolite Beta
title_short Influence of Cation-Exchanged Copper on the Adsorption of Phenol onto Zeolite Beta
title_sort influence of cation exchanged copper on the adsorption of phenol onto zeolite beta
url https://doi.org/10.1260/0263-6174.32.8.635
work_keys_str_mv AT dsmart influenceofcationexchangedcopperontheadsorptionofphenolontozeolitebeta
AT tcurtin influenceofcationexchangedcopperontheadsorptionofphenolontozeolitebeta
AT tfodwyer influenceofcationexchangedcopperontheadsorptionofphenolontozeolitebeta