Preparation and evaluation of heavy metal rejection properties of polyetherimide/porous activated bentonite clay nanocomposite membrane

The acid activated bentonite clay ranging from 1.0 to 4.0 wt% was incorporated into polyetherimide membranes and was extensively studied for its morphology, porosity, membrane hydraulic resistance and hydrophilic properties. The nanocomposite membrane has shown an increment in porosity, hydrophilici...

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Main Authors: Ismail, Ahmad Fauzi, Isloor, Arun M., Hebbar, Raghavendra S.
Format: Article
Published: Royal Society of Chemistry 2014
Subjects:
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author Ismail, Ahmad Fauzi
Isloor, Arun M.
Hebbar, Raghavendra S.
author_facet Ismail, Ahmad Fauzi
Isloor, Arun M.
Hebbar, Raghavendra S.
author_sort Ismail, Ahmad Fauzi
collection ePrints
description The acid activated bentonite clay ranging from 1.0 to 4.0 wt% was incorporated into polyetherimide membranes and was extensively studied for its morphology, porosity, membrane hydraulic resistance and hydrophilic properties. The nanocomposite membrane has shown an increment in porosity, hydrophilicity and a reduction in hydraulic resistance. Elemental mapping studies confirmed the intercalation of activated bentonite clay within the polymer matrix. Studies have been conducted to analyse the permeate flux and rejection of Cu(ii), Ni(ii) and Cd(ii) ions by varying the pH and initial feed concentration. The results revealed that membranes with higher clay dosage showed enhanced flux and rejection, whereas lower rejection was observed in the case of lower pH and higher initial feed concentrations. It has also been demonstrated that the affinity of metal ions to form the hydration sphere and the adsorption capacity towards bentonite clay plays a vital role in the effective removal of metal ions. The membrane showed good rejection of heavy metal ions without any external chelating agent. The membranes showed maximum rejection of 69.3%, 76.2% and 82.5% for 250 ppm of Cd(ii), Ni(ii) and Cu(ii) ion solutions, respectively. The low level of heavy metal concentration in the permeate indicates that good quality water could be reclaimed for further reuse.
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spelling utm.eprints-623122017-06-01T06:15:45Z http://eprints.utm.my/62312/ Preparation and evaluation of heavy metal rejection properties of polyetherimide/porous activated bentonite clay nanocomposite membrane Ismail, Ahmad Fauzi Isloor, Arun M. Hebbar, Raghavendra S. TN Mining engineering. Metallurgy The acid activated bentonite clay ranging from 1.0 to 4.0 wt% was incorporated into polyetherimide membranes and was extensively studied for its morphology, porosity, membrane hydraulic resistance and hydrophilic properties. The nanocomposite membrane has shown an increment in porosity, hydrophilicity and a reduction in hydraulic resistance. Elemental mapping studies confirmed the intercalation of activated bentonite clay within the polymer matrix. Studies have been conducted to analyse the permeate flux and rejection of Cu(ii), Ni(ii) and Cd(ii) ions by varying the pH and initial feed concentration. The results revealed that membranes with higher clay dosage showed enhanced flux and rejection, whereas lower rejection was observed in the case of lower pH and higher initial feed concentrations. It has also been demonstrated that the affinity of metal ions to form the hydration sphere and the adsorption capacity towards bentonite clay plays a vital role in the effective removal of metal ions. The membrane showed good rejection of heavy metal ions without any external chelating agent. The membranes showed maximum rejection of 69.3%, 76.2% and 82.5% for 250 ppm of Cd(ii), Ni(ii) and Cu(ii) ion solutions, respectively. The low level of heavy metal concentration in the permeate indicates that good quality water could be reclaimed for further reuse. Royal Society of Chemistry 2014 Article PeerReviewed Ismail, Ahmad Fauzi and Isloor, Arun M. and Hebbar, Raghavendra S. (2014) Preparation and evaluation of heavy metal rejection properties of polyetherimide/porous activated bentonite clay nanocomposite membrane. RSC Advances, 4 (88). p. 47248. ISSN 2046-2069 http://dx.doi.org/10.1039/c4ra09018g DOI: 10.1039/c4ra09018g
spellingShingle TN Mining engineering. Metallurgy
Ismail, Ahmad Fauzi
Isloor, Arun M.
Hebbar, Raghavendra S.
Preparation and evaluation of heavy metal rejection properties of polyetherimide/porous activated bentonite clay nanocomposite membrane
title Preparation and evaluation of heavy metal rejection properties of polyetherimide/porous activated bentonite clay nanocomposite membrane
title_full Preparation and evaluation of heavy metal rejection properties of polyetherimide/porous activated bentonite clay nanocomposite membrane
title_fullStr Preparation and evaluation of heavy metal rejection properties of polyetherimide/porous activated bentonite clay nanocomposite membrane
title_full_unstemmed Preparation and evaluation of heavy metal rejection properties of polyetherimide/porous activated bentonite clay nanocomposite membrane
title_short Preparation and evaluation of heavy metal rejection properties of polyetherimide/porous activated bentonite clay nanocomposite membrane
title_sort preparation and evaluation of heavy metal rejection properties of polyetherimide porous activated bentonite clay nanocomposite membrane
topic TN Mining engineering. Metallurgy
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AT isloorarunm preparationandevaluationofheavymetalrejectionpropertiesofpolyetherimideporousactivatedbentoniteclaynanocompositemembrane
AT hebbarraghavendras preparationandevaluationofheavymetalrejectionpropertiesofpolyetherimideporousactivatedbentoniteclaynanocompositemembrane