Nano-zinc oxide fibers: Synthesis, characterization, adsorption of acid blue 92 dye, isotherms, thermodynamics and kinetics

Surface water is significantly contaminated by different dyes and pigments around the world due to rapid industrialization, especially textile/dyeing. Bangladesh's export-driven textile industry has grown dramatically over the past few decades, severely contaminating the nearby waterways. In th...

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Main Authors: Qais, Deepro Sanjid, Islam, Md. Nazrul, Othman, Mohd. Hafiz Dzarfan, Mahmud, H. N. M. Ekramul, Quayum, Md. Emran, Islam, Md. Anwarul, Mohammad Ibrahim Ismail, Iqbal, Habib, Ahsan
Format: Article
Language:English
Published: KeAi Communications Co. 2023
Subjects:
Online Access:http://eprints.utm.my/106609/1/MohdHafizDzarfan2023_NanoZincOxideFibersSynthesisCharacterization.pdf
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author Qais, Deepro Sanjid
Islam, Md. Nazrul
Othman, Mohd. Hafiz Dzarfan
Mahmud, H. N. M. Ekramul
Quayum, Md. Emran
Islam, Md. Anwarul
Mohammad Ibrahim Ismail, Iqbal
Habib, Ahsan
author_facet Qais, Deepro Sanjid
Islam, Md. Nazrul
Othman, Mohd. Hafiz Dzarfan
Mahmud, H. N. M. Ekramul
Quayum, Md. Emran
Islam, Md. Anwarul
Mohammad Ibrahim Ismail, Iqbal
Habib, Ahsan
author_sort Qais, Deepro Sanjid
collection ePrints
description Surface water is significantly contaminated by different dyes and pigments around the world due to rapid industrialization, especially textile/dyeing. Bangladesh's export-driven textile industry has grown dramatically over the past few decades, severely contaminating the nearby waterways. In this study, nano-zinc oxide was synthesized through precipitation method in the presence of PEG 400. SEM, XRD, and FTIR techniques were used to characterize the synthesized ZnO and revealed that it was pure, fiber-like, and essentially wurtzite. Nano-ZnO was used to remove the ionic dye acid blue 92 (AB 92) from aqueous solution in order to test its effectiveness as an adsorbent. The effects of pH, adsorbent dosage, AB 92 concentration, and contact time were investigated in order to optimize the adsorption process. According to correlation coefficients (R2) and the Redlich-Peterson model's fitting, the adsorption process followed the Freundlich isotherm at higher temperature and the Langmuir isotherm at lower temperature. The adsorption process was found to be endothermic and spontaneous. For adsorption thermodynamics, ?H was found to be +20.32 kJmol-1, and ?G was varied from -1.86 to -3.84 kJmol-1 as the temperature increased from 291 to 317 K. The adsorption kinetics exhibited pseudo second order. The Temkin isotherm and Elovich kinetic models suggested that the process was chemisorption. The nano-ZnO showed tremendous re-usability as an adsorbent for the removal of AB 92. The results are suggesting for designing nano-ZnO-based methods to remove organic pollutants efficiently from industrial effluents for ecological and sustainable development. The mechanism of formation of nano-ZnO fiber and adsorption of anionic dye on nano-ZnO are also explored.
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spelling utm.eprints-1066092024-07-14T09:24:49Z http://eprints.utm.my/106609/ Nano-zinc oxide fibers: Synthesis, characterization, adsorption of acid blue 92 dye, isotherms, thermodynamics and kinetics Qais, Deepro Sanjid Islam, Md. Nazrul Othman, Mohd. Hafiz Dzarfan Mahmud, H. N. M. Ekramul Quayum, Md. Emran Islam, Md. Anwarul Mohammad Ibrahim Ismail, Iqbal Habib, Ahsan TP Chemical technology Surface water is significantly contaminated by different dyes and pigments around the world due to rapid industrialization, especially textile/dyeing. Bangladesh's export-driven textile industry has grown dramatically over the past few decades, severely contaminating the nearby waterways. In this study, nano-zinc oxide was synthesized through precipitation method in the presence of PEG 400. SEM, XRD, and FTIR techniques were used to characterize the synthesized ZnO and revealed that it was pure, fiber-like, and essentially wurtzite. Nano-ZnO was used to remove the ionic dye acid blue 92 (AB 92) from aqueous solution in order to test its effectiveness as an adsorbent. The effects of pH, adsorbent dosage, AB 92 concentration, and contact time were investigated in order to optimize the adsorption process. According to correlation coefficients (R2) and the Redlich-Peterson model's fitting, the adsorption process followed the Freundlich isotherm at higher temperature and the Langmuir isotherm at lower temperature. The adsorption process was found to be endothermic and spontaneous. For adsorption thermodynamics, ?H was found to be +20.32 kJmol-1, and ?G was varied from -1.86 to -3.84 kJmol-1 as the temperature increased from 291 to 317 K. The adsorption kinetics exhibited pseudo second order. The Temkin isotherm and Elovich kinetic models suggested that the process was chemisorption. The nano-ZnO showed tremendous re-usability as an adsorbent for the removal of AB 92. The results are suggesting for designing nano-ZnO-based methods to remove organic pollutants efficiently from industrial effluents for ecological and sustainable development. The mechanism of formation of nano-ZnO fiber and adsorption of anionic dye on nano-ZnO are also explored. KeAi Communications Co. 2023 Article PeerReviewed application/pdf en http://eprints.utm.my/106609/1/MohdHafizDzarfan2023_NanoZincOxideFibersSynthesisCharacterization.pdf Qais, Deepro Sanjid and Islam, Md. Nazrul and Othman, Mohd. Hafiz Dzarfan and Mahmud, H. N. M. Ekramul and Quayum, Md. Emran and Islam, Md. Anwarul and Mohammad Ibrahim Ismail, Iqbal and Habib, Ahsan (2023) Nano-zinc oxide fibers: Synthesis, characterization, adsorption of acid blue 92 dye, isotherms, thermodynamics and kinetics. Emerging Contaminants, 9 (2). pp. 1-13. ISSN 2405-6650 http://dx.doi.org/10.1016/j.emcon.2023.100224 DOI : 10.1016/j.emcon.2023.100224
spellingShingle TP Chemical technology
Qais, Deepro Sanjid
Islam, Md. Nazrul
Othman, Mohd. Hafiz Dzarfan
Mahmud, H. N. M. Ekramul
Quayum, Md. Emran
Islam, Md. Anwarul
Mohammad Ibrahim Ismail, Iqbal
Habib, Ahsan
Nano-zinc oxide fibers: Synthesis, characterization, adsorption of acid blue 92 dye, isotherms, thermodynamics and kinetics
title Nano-zinc oxide fibers: Synthesis, characterization, adsorption of acid blue 92 dye, isotherms, thermodynamics and kinetics
title_full Nano-zinc oxide fibers: Synthesis, characterization, adsorption of acid blue 92 dye, isotherms, thermodynamics and kinetics
title_fullStr Nano-zinc oxide fibers: Synthesis, characterization, adsorption of acid blue 92 dye, isotherms, thermodynamics and kinetics
title_full_unstemmed Nano-zinc oxide fibers: Synthesis, characterization, adsorption of acid blue 92 dye, isotherms, thermodynamics and kinetics
title_short Nano-zinc oxide fibers: Synthesis, characterization, adsorption of acid blue 92 dye, isotherms, thermodynamics and kinetics
title_sort nano zinc oxide fibers synthesis characterization adsorption of acid blue 92 dye isotherms thermodynamics and kinetics
topic TP Chemical technology
url http://eprints.utm.my/106609/1/MohdHafizDzarfan2023_NanoZincOxideFibersSynthesisCharacterization.pdf
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