Highly Selective Removal of Ni(II) from Aqueous Solution using Crosslinked-Glutaraldehyde Chitosan Beads
Heavy metals like nickel, chromium and copper have been excessively released into the environment due to rapid industrialization, which can cause a major global concern. There have been numerous studies done to remove heavy metals using various adsorbents such as chitosan. This study reports glutara...
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Malaysian Institute of Chemistry
2024
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2-s2.0-85206087867 Ramli N.L.; Kassim N.S.A.; Ibrahim W.N.W.; Pungot N.H.; Abidin N.A.Z. Highly Selective Removal of Ni(II) from Aqueous Solution using Crosslinked-Glutaraldehyde Chitosan Beads 2024 Malaysian Journal of Chemistry 26 5 10.55373/mjchem.v26i5.112 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85206087867&doi=10.55373%2fmjchem.v26i5.112&partnerID=40&md5=62a5f36718d52edb3ba812008db23135 Heavy metals like nickel, chromium and copper have been excessively released into the environment due to rapid industrialization, which can cause a major global concern. There have been numerous studies done to remove heavy metals using various adsorbents such as chitosan. This study reports glutaraldehyde-crosslinked chitosan (GCC) beads as highly efficient bioadsorbents for the separation of nickel ions (Ni (II)) from aqueous solutions. With increasing the extent of glutaraldehyde-crosslinking, the GCC beads showed enhanced adsorption selectivity and capacity toward Ni (II). Fourier-transform infrared spectroscopy (FTIR) have been utilized for the characterization of the synthesized bioadsorbents. The effectiveness of GCC for Ni (II) removal in an aqueous solution at various parameters has been evaluated by flame atomic absorption spectroscopy (FAAS). The effects of parameters namely pH, agitation speed, contact time, adsorbent dose, and initial metal ion concentration were optimized by batch experiments. Under the optimum conditions, the adsorbent shows 91.97% for Ni (II) removal percent with good reusability till third cycle. Kinetic, isothermal, and thermodynamic analyses have been studied to have deep insights into the mechanism of Ni (II) on the synthesized adsorbents. © 2024 Malaysian Institute of Chemistry. All rights reserved. Malaysian Institute of Chemistry 15112292 English Article |
author |
Ramli N.L.; Kassim N.S.A.; Ibrahim W.N.W.; Pungot N.H.; Abidin N.A.Z. |
spellingShingle |
Ramli N.L.; Kassim N.S.A.; Ibrahim W.N.W.; Pungot N.H.; Abidin N.A.Z. Highly Selective Removal of Ni(II) from Aqueous Solution using Crosslinked-Glutaraldehyde Chitosan Beads |
author_facet |
Ramli N.L.; Kassim N.S.A.; Ibrahim W.N.W.; Pungot N.H.; Abidin N.A.Z. |
author_sort |
Ramli N.L.; Kassim N.S.A.; Ibrahim W.N.W.; Pungot N.H.; Abidin N.A.Z. |
title |
Highly Selective Removal of Ni(II) from Aqueous Solution using Crosslinked-Glutaraldehyde Chitosan Beads |
title_short |
Highly Selective Removal of Ni(II) from Aqueous Solution using Crosslinked-Glutaraldehyde Chitosan Beads |
title_full |
Highly Selective Removal of Ni(II) from Aqueous Solution using Crosslinked-Glutaraldehyde Chitosan Beads |
title_fullStr |
Highly Selective Removal of Ni(II) from Aqueous Solution using Crosslinked-Glutaraldehyde Chitosan Beads |
title_full_unstemmed |
Highly Selective Removal of Ni(II) from Aqueous Solution using Crosslinked-Glutaraldehyde Chitosan Beads |
title_sort |
Highly Selective Removal of Ni(II) from Aqueous Solution using Crosslinked-Glutaraldehyde Chitosan Beads |
publishDate |
2024 |
container_title |
Malaysian Journal of Chemistry |
container_volume |
26 |
container_issue |
5 |
doi_str_mv |
10.55373/mjchem.v26i5.112 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85206087867&doi=10.55373%2fmjchem.v26i5.112&partnerID=40&md5=62a5f36718d52edb3ba812008db23135 |
description |
Heavy metals like nickel, chromium and copper have been excessively released into the environment due to rapid industrialization, which can cause a major global concern. There have been numerous studies done to remove heavy metals using various adsorbents such as chitosan. This study reports glutaraldehyde-crosslinked chitosan (GCC) beads as highly efficient bioadsorbents for the separation of nickel ions (Ni (II)) from aqueous solutions. With increasing the extent of glutaraldehyde-crosslinking, the GCC beads showed enhanced adsorption selectivity and capacity toward Ni (II). Fourier-transform infrared spectroscopy (FTIR) have been utilized for the characterization of the synthesized bioadsorbents. The effectiveness of GCC for Ni (II) removal in an aqueous solution at various parameters has been evaluated by flame atomic absorption spectroscopy (FAAS). The effects of parameters namely pH, agitation speed, contact time, adsorbent dose, and initial metal ion concentration were optimized by batch experiments. Under the optimum conditions, the adsorbent shows 91.97% for Ni (II) removal percent with good reusability till third cycle. Kinetic, isothermal, and thermodynamic analyses have been studied to have deep insights into the mechanism of Ni (II) on the synthesized adsorbents. © 2024 Malaysian Institute of Chemistry. All rights reserved. |
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Malaysian Institute of Chemistry |
issn |
15112292 |
language |
English |
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Article |
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scopus |
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Scopus |
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1814778501576785920 |