Adsorptive removal of V(V) ions using clinoptilolite modified with polypyrrole and iron oxide nanoparticles in column studies

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Subtitle: Adsorptive removal of V(V) ions using clinoptilolite modified with polypyrrole and iron oxide nanoparticles in column studies

Publisher: Academic Press

Publication year: 2018

Volume number: 3

Issue number: 36

Start page: 2119

End page: 2127

Number of pages: 9

ISSN: 0065-3055

URL: https://www.cambridge.org/core/journals/mrs-advances/article/adsorptive-removal-of-vv-ions-using-clinoptilolite-modified-with-polypyrrole-and-iron-oxide-nanoparticles-in-column-studies/33C76FC0F3200C8C8F0E38582CE6821A

Languages: English-United States (EN-US)


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Abstract

Clinoptilolite modified with polypyrrole and iron oxide nanoparticles (Cln-PPy-Fe3O4) nanocomposite as a potential adsorbent for V (V) ions was prepared via polymerization of pyrrole monomer using FeCl3 oxidant in aqueous medium in which clinoptilolite-Fe3O4 nanoparticles were suspended. The structure and morphology of the prepared adsorbent was analysed with the Fourier transform infrared (FTIR) spectrometer, field-emission scanning electron microscope (FE-SEM), energy dispersive X-ray spectroscopy (EDX) and high-resolution transmission electron microscope (HR-TEM). Column fixed bed studies were performed to test the ability of the adsorbent to remove V (V) ions from aqueous solution. Low values of adsorbent exhaustion rate (AER) and large bed volumes were observed at lower metal ion concentration, higher bed mass and lower flow rate for V(V) removal indicating good performance. The volume of treated water processed at breakthrough point were found to be 0.09; 0.63 and 1.26 L for bed mass of 1, 2.5; and 5 g, respectively. The Yoon–Nelson and Thomas models appropriately described the breakthrough curves.


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adsorption


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Last updated on 2019-17-07 at 09:59