Evaluation of heavy metals removal by cross-linked (polyvinyl alcohol/chitosan/magnetic) nano fibrous membrane prepared by electro spinning technique

In this study, chitosan/polyvinyl alcohol (PVA)/magnetic nano fibrous membrane was fabricated via electro spinning. First, magnetic nano particles with average size of 7.98 nm, were fabricated using co-precipitation method. Then, chitosan solution was blended with aqueous PVA solution in different w...

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Main Authors: Kalantari, Katayoon, Afiffi, Amalina M., Salleh, Ariesman, Mohamad, Edzrol Niza, Izadiyan, Zahra
Format: Article
Language:English
Published: Desalination Publ 2017
Subjects:
Online Access:http://eprints.utm.my/77279/1/ZahraIzadiyan2017_EvaluationofHeavyMetalsRemovalbyCross.pdf
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author Kalantari, Katayoon
Afiffi, Amalina M.
Salleh, Ariesman
Mohamad, Edzrol Niza
Izadiyan, Zahra
author_facet Kalantari, Katayoon
Afiffi, Amalina M.
Salleh, Ariesman
Mohamad, Edzrol Niza
Izadiyan, Zahra
author_sort Kalantari, Katayoon
collection ePrints
description In this study, chitosan/polyvinyl alcohol (PVA)/magnetic nano fibrous membrane was fabricated via electro spinning. First, magnetic nano particles with average size of 7.98 nm, were fabricated using co-precipitation method. Then, chitosan solution was blended with aqueous PVA solution in different weight ratios. The electro spun fibers were kept in a glass desiccator saturated with (50% aqueous solution) of glutaraldehyde vapor for 24 h. Morphological analysis of chitosan/PVA electro spun nano fibrous showed a defect-free nano fiber material with 50:50 weight ratio of chitosan/PVA. Subsequently, 1 wt.% of magnetic nano particles was added to 50:50 chitosan/PVA solution and then, fine bead free nano fibrous electro spun was fabricated. The resulting nano fiber was characterized with field emission scanning electron microscopy, energy dispersive X-ray spectroscopy, X-Ray diffraction, Fourier transform infrared spectroscopy, swelling test, and adsorption test. The resulting membrane was stable in distilled water, acidic, and basic media overnight. Moreover, the adsorption ability of nano fibrous membrane was studied over Cr6+, Pb2+, and Ni2+ ions. Kinetic parameters were estimated using the first-order and pseudo-second-order models. Kinetic study showed that adsorption rate was high. Therefore, chitosan/polyvinyl alcohol (PVA)/magnetic nano fibrous membrane can be a useful material for water treatment at moderate concentration of heavy metals.
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spelling utm.eprints-772792018-06-29T21:27:14Z http://eprints.utm.my/77279/ Evaluation of heavy metals removal by cross-linked (polyvinyl alcohol/chitosan/magnetic) nano fibrous membrane prepared by electro spinning technique Kalantari, Katayoon Afiffi, Amalina M. Salleh, Ariesman Mohamad, Edzrol Niza Izadiyan, Zahra T Technology (General) In this study, chitosan/polyvinyl alcohol (PVA)/magnetic nano fibrous membrane was fabricated via electro spinning. First, magnetic nano particles with average size of 7.98 nm, were fabricated using co-precipitation method. Then, chitosan solution was blended with aqueous PVA solution in different weight ratios. The electro spun fibers were kept in a glass desiccator saturated with (50% aqueous solution) of glutaraldehyde vapor for 24 h. Morphological analysis of chitosan/PVA electro spun nano fibrous showed a defect-free nano fiber material with 50:50 weight ratio of chitosan/PVA. Subsequently, 1 wt.% of magnetic nano particles was added to 50:50 chitosan/PVA solution and then, fine bead free nano fibrous electro spun was fabricated. The resulting nano fiber was characterized with field emission scanning electron microscopy, energy dispersive X-ray spectroscopy, X-Ray diffraction, Fourier transform infrared spectroscopy, swelling test, and adsorption test. The resulting membrane was stable in distilled water, acidic, and basic media overnight. Moreover, the adsorption ability of nano fibrous membrane was studied over Cr6+, Pb2+, and Ni2+ ions. Kinetic parameters were estimated using the first-order and pseudo-second-order models. Kinetic study showed that adsorption rate was high. Therefore, chitosan/polyvinyl alcohol (PVA)/magnetic nano fibrous membrane can be a useful material for water treatment at moderate concentration of heavy metals. Desalination Publ 2017 Article PeerReviewed application/pdf en http://eprints.utm.my/77279/1/ZahraIzadiyan2017_EvaluationofHeavyMetalsRemovalbyCross.pdf Kalantari, Katayoon and Afiffi, Amalina M. and Salleh, Ariesman and Mohamad, Edzrol Niza and Izadiyan, Zahra (2017) Evaluation of heavy metals removal by cross-linked (polyvinyl alcohol/chitosan/magnetic) nano fibrous membrane prepared by electro spinning technique. Desalination and Water Treatment, 98 . pp. 266-275. ISSN 1944-3994 DOI:10.5004/dwt.2017.21741
spellingShingle T Technology (General)
Kalantari, Katayoon
Afiffi, Amalina M.
Salleh, Ariesman
Mohamad, Edzrol Niza
Izadiyan, Zahra
Evaluation of heavy metals removal by cross-linked (polyvinyl alcohol/chitosan/magnetic) nano fibrous membrane prepared by electro spinning technique
title Evaluation of heavy metals removal by cross-linked (polyvinyl alcohol/chitosan/magnetic) nano fibrous membrane prepared by electro spinning technique
title_full Evaluation of heavy metals removal by cross-linked (polyvinyl alcohol/chitosan/magnetic) nano fibrous membrane prepared by electro spinning technique
title_fullStr Evaluation of heavy metals removal by cross-linked (polyvinyl alcohol/chitosan/magnetic) nano fibrous membrane prepared by electro spinning technique
title_full_unstemmed Evaluation of heavy metals removal by cross-linked (polyvinyl alcohol/chitosan/magnetic) nano fibrous membrane prepared by electro spinning technique
title_short Evaluation of heavy metals removal by cross-linked (polyvinyl alcohol/chitosan/magnetic) nano fibrous membrane prepared by electro spinning technique
title_sort evaluation of heavy metals removal by cross linked polyvinyl alcohol chitosan magnetic nano fibrous membrane prepared by electro spinning technique
topic T Technology (General)
url http://eprints.utm.my/77279/1/ZahraIzadiyan2017_EvaluationofHeavyMetalsRemovalbyCross.pdf
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