Highly Efficient and Reusable Montmorillonite/Fe3O4/Humic Acid Nanocomposites for Simultaneous Removal of Cr(VI) and Aniline
Recyclable nanomaterials are in great need to develop clean technology for applications in the removal of water contaminants. In this work, easily separable montmorillonite/Fe3O4/humic acid (MFH) nanocomposites were fabricated through a facile hydrothermal route. It was found the adsorption ability...
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doaj-4eac85a7bc9b465f86989e1510bc3c092020-11-24T22:08:39ZengMDPI AGNanomaterials2079-49912018-07-018753710.3390/nano8070537nano8070537Highly Efficient and Reusable Montmorillonite/Fe3O4/Humic Acid Nanocomposites for Simultaneous Removal of Cr(VI) and AnilineHaijiao Lu0Jingkang Wang1Fei Li2Xin Huang3Beiqian Tian4Hongxun Hao5School of Chemical Engineering and Technology, Tianjin University, Tianjin 30072, ChinaSchool of Chemical Engineering and Technology, Tianjin University, Tianjin 30072, ChinaSchool of Chemical Engineering and Technology, Tianjin University, Tianjin 30072, ChinaSchool of Chemical Engineering and Technology, Tianjin University, Tianjin 30072, ChinaSchool of Chemical Engineering and Technology, Tianjin University, Tianjin 30072, ChinaSchool of Chemical Engineering and Technology, Tianjin University, Tianjin 30072, ChinaRecyclable nanomaterials are in great need to develop clean technology for applications in the removal of water contaminants. In this work, easily separable montmorillonite/Fe3O4/humic acid (MFH) nanocomposites were fabricated through a facile hydrothermal route. It was found the adsorption ability and stability of MFH was significantly enhanced due to the synergistic effects between montmorillonite, Fe3O4 nanoparticles and humic acid. The MFH nanocomposites are highly efficient and recyclable as they can remove at least 82.3% of Cr(VI) and 95.1% of aniline in six consecutive runs. The adsorption mechanism was investigated by analyzing the kinetic parameters of pseudo first-order, pseudo second-order, and intraparticle diffusion models and describing the equilibrium isotherms of Langmuir and Freundlich models. Results indicated different adsorption mechanisms of Cr(VI) and aniline by MFH. The readily synthesized MFH nanocomposites can act as effective and practical materials for environmental applications.http://www.mdpi.com/2079-4991/8/7/537nanocompositeswastewateradsorptionkineticsisothermsreusability |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Haijiao Lu Jingkang Wang Fei Li Xin Huang Beiqian Tian Hongxun Hao |
spellingShingle |
Haijiao Lu Jingkang Wang Fei Li Xin Huang Beiqian Tian Hongxun Hao Highly Efficient and Reusable Montmorillonite/Fe3O4/Humic Acid Nanocomposites for Simultaneous Removal of Cr(VI) and Aniline Nanomaterials nanocomposites wastewater adsorption kinetics isotherms reusability |
author_facet |
Haijiao Lu Jingkang Wang Fei Li Xin Huang Beiqian Tian Hongxun Hao |
author_sort |
Haijiao Lu |
title |
Highly Efficient and Reusable Montmorillonite/Fe3O4/Humic Acid Nanocomposites for Simultaneous Removal of Cr(VI) and Aniline |
title_short |
Highly Efficient and Reusable Montmorillonite/Fe3O4/Humic Acid Nanocomposites for Simultaneous Removal of Cr(VI) and Aniline |
title_full |
Highly Efficient and Reusable Montmorillonite/Fe3O4/Humic Acid Nanocomposites for Simultaneous Removal of Cr(VI) and Aniline |
title_fullStr |
Highly Efficient and Reusable Montmorillonite/Fe3O4/Humic Acid Nanocomposites for Simultaneous Removal of Cr(VI) and Aniline |
title_full_unstemmed |
Highly Efficient and Reusable Montmorillonite/Fe3O4/Humic Acid Nanocomposites for Simultaneous Removal of Cr(VI) and Aniline |
title_sort |
highly efficient and reusable montmorillonite/fe3o4/humic acid nanocomposites for simultaneous removal of cr(vi) and aniline |
publisher |
MDPI AG |
series |
Nanomaterials |
issn |
2079-4991 |
publishDate |
2018-07-01 |
description |
Recyclable nanomaterials are in great need to develop clean technology for applications in the removal of water contaminants. In this work, easily separable montmorillonite/Fe3O4/humic acid (MFH) nanocomposites were fabricated through a facile hydrothermal route. It was found the adsorption ability and stability of MFH was significantly enhanced due to the synergistic effects between montmorillonite, Fe3O4 nanoparticles and humic acid. The MFH nanocomposites are highly efficient and recyclable as they can remove at least 82.3% of Cr(VI) and 95.1% of aniline in six consecutive runs. The adsorption mechanism was investigated by analyzing the kinetic parameters of pseudo first-order, pseudo second-order, and intraparticle diffusion models and describing the equilibrium isotherms of Langmuir and Freundlich models. Results indicated different adsorption mechanisms of Cr(VI) and aniline by MFH. The readily synthesized MFH nanocomposites can act as effective and practical materials for environmental applications. |
topic |
nanocomposites wastewater adsorption kinetics isotherms reusability |
url |
http://www.mdpi.com/2079-4991/8/7/537 |
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