Adsorption potential of CuO-embedded chitosan bead for the removal of acid blue 25 dye
Anthraquinone-based anionic dyes like acid blue 25 (AB25) are among the problematic class of pollutants in wastewaters that are detrimental to human health and aquatic organisms. Chitosan (CS), a biopolymer with rich amino and hydroxyl groups is a potential adsorbent for anionic dye but its instabil...
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Ain Shams University
2024
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2-s2.0-85207697359 Saheed I.O.; Zairuddin N.I.; Nizar S.A.; Hanafiah M.A.K.M.; Latip A.F.A.; Suah F.B.M. Adsorption potential of CuO-embedded chitosan bead for the removal of acid blue 25 dye 2024 Ain Shams Engineering Journal 15 12 10.1016/j.asej.2024.103125 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85207697359&doi=10.1016%2fj.asej.2024.103125&partnerID=40&md5=87ac91c2cedb527d6a848aa4c4bca420 Anthraquinone-based anionic dyes like acid blue 25 (AB25) are among the problematic class of pollutants in wastewaters that are detrimental to human health and aquatic organisms. Chitosan (CS), a biopolymer with rich amino and hydroxyl groups is a potential adsorbent for anionic dye but its instability in acidic medium is its major drawback. In this work, the potential of an innovative and sustainable chitosan-copper oxide bead (CS-CuO) developed to adsorb AB25 from aqueous environment was assessed. The batch adsorption process was studied for significant operational variables, and the CS-CuO was methodically characterised using XRD, FTIR, TGA, SEM and EDX. Unlike CS, the prepared CS-CuO was stable in an acidic and basic medium. XRD pattern of CS-CuO revealed an amorphous and crystalline phase. The micrograph of CS showed a non-porous membranous surface, while CS-CuO shows a relatively rough and irregularly shaped sheet-like structure perforated with pores network. The functional groups O−H, C═O, C−O and N−H on the CS-CuO support its attachment to AB25 dye as reflected in change of absorption signals on FTIR spectra. Electrostatic attraction between AB25 and CS-CuO was most favoured at pH 6 where highest AB25 removal occurs. The adsorption capacity of 294.1 mg/g was obtained for the adsorption process at initial dye concentration of 100 mg/L at pH 6. Langmuir isotherm model and pseudo-second-order kinetics best described the adsorption. The spent CS-CuO was better regenerated in the basic solution (0.1 M NaOH), and its reusability gave 80 % desorption capacity at 3rd cycle. © 2024 The Author(s) Ain Shams University 20904479 English Article |
author |
Saheed I.O.; Zairuddin N.I.; Nizar S.A.; Hanafiah M.A.K.M.; Latip A.F.A.; Suah F.B.M. |
spellingShingle |
Saheed I.O.; Zairuddin N.I.; Nizar S.A.; Hanafiah M.A.K.M.; Latip A.F.A.; Suah F.B.M. Adsorption potential of CuO-embedded chitosan bead for the removal of acid blue 25 dye |
author_facet |
Saheed I.O.; Zairuddin N.I.; Nizar S.A.; Hanafiah M.A.K.M.; Latip A.F.A.; Suah F.B.M. |
author_sort |
Saheed I.O.; Zairuddin N.I.; Nizar S.A.; Hanafiah M.A.K.M.; Latip A.F.A.; Suah F.B.M. |
title |
Adsorption potential of CuO-embedded chitosan bead for the removal of acid blue 25 dye |
title_short |
Adsorption potential of CuO-embedded chitosan bead for the removal of acid blue 25 dye |
title_full |
Adsorption potential of CuO-embedded chitosan bead for the removal of acid blue 25 dye |
title_fullStr |
Adsorption potential of CuO-embedded chitosan bead for the removal of acid blue 25 dye |
title_full_unstemmed |
Adsorption potential of CuO-embedded chitosan bead for the removal of acid blue 25 dye |
title_sort |
Adsorption potential of CuO-embedded chitosan bead for the removal of acid blue 25 dye |
publishDate |
2024 |
container_title |
Ain Shams Engineering Journal |
container_volume |
15 |
container_issue |
12 |
doi_str_mv |
10.1016/j.asej.2024.103125 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85207697359&doi=10.1016%2fj.asej.2024.103125&partnerID=40&md5=87ac91c2cedb527d6a848aa4c4bca420 |
description |
Anthraquinone-based anionic dyes like acid blue 25 (AB25) are among the problematic class of pollutants in wastewaters that are detrimental to human health and aquatic organisms. Chitosan (CS), a biopolymer with rich amino and hydroxyl groups is a potential adsorbent for anionic dye but its instability in acidic medium is its major drawback. In this work, the potential of an innovative and sustainable chitosan-copper oxide bead (CS-CuO) developed to adsorb AB25 from aqueous environment was assessed. The batch adsorption process was studied for significant operational variables, and the CS-CuO was methodically characterised using XRD, FTIR, TGA, SEM and EDX. Unlike CS, the prepared CS-CuO was stable in an acidic and basic medium. XRD pattern of CS-CuO revealed an amorphous and crystalline phase. The micrograph of CS showed a non-porous membranous surface, while CS-CuO shows a relatively rough and irregularly shaped sheet-like structure perforated with pores network. The functional groups O−H, C═O, C−O and N−H on the CS-CuO support its attachment to AB25 dye as reflected in change of absorption signals on FTIR spectra. Electrostatic attraction between AB25 and CS-CuO was most favoured at pH 6 where highest AB25 removal occurs. The adsorption capacity of 294.1 mg/g was obtained for the adsorption process at initial dye concentration of 100 mg/L at pH 6. Langmuir isotherm model and pseudo-second-order kinetics best described the adsorption. The spent CS-CuO was better regenerated in the basic solution (0.1 M NaOH), and its reusability gave 80 % desorption capacity at 3rd cycle. © 2024 The Author(s) |
publisher |
Ain Shams University |
issn |
20904479 |
language |
English |
format |
Article |
accesstype |
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record_format |
scopus |
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Scopus |
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1820775430617038848 |