Functionalized titanate nanotube-polyetherimide nanocomposite membrane for improved salt rejection under low pressure nanofiltration

Functionalized titanate nanotubes were prepared using a facile and eco-friendly method. Nanofiltration membranes were fabricated via a simple phase inversion method. The neat and mixed matrix membrane (MMMs) was prepared using PEI as a polymeric material and nanomaterials such as TiO2 particles (TP)...

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Main Authors: Sumisha, Anappara, Arthanareeswaran, Gangasalam, Ismail, Ahmad Fauzi, Kumar, Dharani Praveen, Shankar, Muthukonda Venkatakrishnan
Format: Article
Published: Royal Society of Chemistry 2015
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Online Access:http://eprints.utm.my/id/eprint/55415/
http://dx.doi.org/10.1039/c5ra03520a
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spelling my.utm.554152017-02-15T06:47:23Z http://eprints.utm.my/id/eprint/55415/ Functionalized titanate nanotube-polyetherimide nanocomposite membrane for improved salt rejection under low pressure nanofiltration Sumisha, Anappara Arthanareeswaran, Gangasalam Ismail, Ahmad Fauzi Kumar, Dharani Praveen Shankar, Muthukonda Venkatakrishnan TP Chemical technology Functionalized titanate nanotubes were prepared using a facile and eco-friendly method. Nanofiltration membranes were fabricated via a simple phase inversion method. The neat and mixed matrix membrane (MMMs) was prepared using PEI as a polymeric material and nanomaterials such as TiO2 particles (TP), as-synthesized hydrogen trititanate nanotubes (pTNT), N-doped TiO2NT (N-TNT) and Cu-doped H2Ti3O7NT (Cu-TNT) served as additives. The crystal phase characterization revealed the anatase phase for TP, trititanate phase for pTNT, anatase-rutile mixed phase for N-TNT, Cu-TNT materials and similar observations were found with the MMMs. The morphology analysis of the neat PEI membrane exhibited a denser top layer and the beneath part of the membrane is tighter. Different from the neat PEI membrane nanocomposites of MMMs showed finger-like macrovoids towards the bottom of the membrane. The water uptake and hydrophilic character of the membranes are found in the following order: neat PEI > PEI/TP > PEI/pTNT > PEI/N-TNT > PEI/Cu-TNT. Interestingly, the salt rejection performance of monovalent (NaCl) and divalent (K2SO4 and CaCl2) ions in the single salt mixture were found to increase in the same order. The salt rejection performance of PEI/Cu-TNT was found in the decreasing order: K2SO4 (80%) < NaCl (75%) < CaCl2 (45%). The high performance of PEI/Cu-TNT in salt rejection and antifouling properties is ascribed to the tubular morphology, and the copper dopant results in the high hydrophilic character of the MMMs Royal Society of Chemistry 2015 Article PeerReviewed Sumisha, Anappara and Arthanareeswaran, Gangasalam and Ismail, Ahmad Fauzi and Kumar, Dharani Praveen and Shankar, Muthukonda Venkatakrishnan (2015) Functionalized titanate nanotube-polyetherimide nanocomposite membrane for improved salt rejection under low pressure nanofiltration. RSC Advances, 5 (49). pp. 39464-39473. ISSN 2046-2069 http://dx.doi.org/10.1039/c5ra03520a DOI:10.1039/c5ra03520a
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Sumisha, Anappara
Arthanareeswaran, Gangasalam
Ismail, Ahmad Fauzi
Kumar, Dharani Praveen
Shankar, Muthukonda Venkatakrishnan
Functionalized titanate nanotube-polyetherimide nanocomposite membrane for improved salt rejection under low pressure nanofiltration
description Functionalized titanate nanotubes were prepared using a facile and eco-friendly method. Nanofiltration membranes were fabricated via a simple phase inversion method. The neat and mixed matrix membrane (MMMs) was prepared using PEI as a polymeric material and nanomaterials such as TiO2 particles (TP), as-synthesized hydrogen trititanate nanotubes (pTNT), N-doped TiO2NT (N-TNT) and Cu-doped H2Ti3O7NT (Cu-TNT) served as additives. The crystal phase characterization revealed the anatase phase for TP, trititanate phase for pTNT, anatase-rutile mixed phase for N-TNT, Cu-TNT materials and similar observations were found with the MMMs. The morphology analysis of the neat PEI membrane exhibited a denser top layer and the beneath part of the membrane is tighter. Different from the neat PEI membrane nanocomposites of MMMs showed finger-like macrovoids towards the bottom of the membrane. The water uptake and hydrophilic character of the membranes are found in the following order: neat PEI > PEI/TP > PEI/pTNT > PEI/N-TNT > PEI/Cu-TNT. Interestingly, the salt rejection performance of monovalent (NaCl) and divalent (K2SO4 and CaCl2) ions in the single salt mixture were found to increase in the same order. The salt rejection performance of PEI/Cu-TNT was found in the decreasing order: K2SO4 (80%) < NaCl (75%) < CaCl2 (45%). The high performance of PEI/Cu-TNT in salt rejection and antifouling properties is ascribed to the tubular morphology, and the copper dopant results in the high hydrophilic character of the MMMs
format Article
author Sumisha, Anappara
Arthanareeswaran, Gangasalam
Ismail, Ahmad Fauzi
Kumar, Dharani Praveen
Shankar, Muthukonda Venkatakrishnan
author_facet Sumisha, Anappara
Arthanareeswaran, Gangasalam
Ismail, Ahmad Fauzi
Kumar, Dharani Praveen
Shankar, Muthukonda Venkatakrishnan
author_sort Sumisha, Anappara
title Functionalized titanate nanotube-polyetherimide nanocomposite membrane for improved salt rejection under low pressure nanofiltration
title_short Functionalized titanate nanotube-polyetherimide nanocomposite membrane for improved salt rejection under low pressure nanofiltration
title_full Functionalized titanate nanotube-polyetherimide nanocomposite membrane for improved salt rejection under low pressure nanofiltration
title_fullStr Functionalized titanate nanotube-polyetherimide nanocomposite membrane for improved salt rejection under low pressure nanofiltration
title_full_unstemmed Functionalized titanate nanotube-polyetherimide nanocomposite membrane for improved salt rejection under low pressure nanofiltration
title_sort functionalized titanate nanotube-polyetherimide nanocomposite membrane for improved salt rejection under low pressure nanofiltration
publisher Royal Society of Chemistry
publishDate 2015
url http://eprints.utm.my/id/eprint/55415/
http://dx.doi.org/10.1039/c5ra03520a
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