Selective Removal of Heavy Metals from Industrial Wastewater Using Maghemite Nanoparticle: Performance and Mechanisms

Селективное удаление тяжелых металлов из промышленных сточных вод с использованием наночастиц маггемита: эффективность и механизмы
Irene M.C. Lo, Guohua Chen, Jing Hu
2006-06-16

Electroplating wastewaterHeavy metal adsorptionLangmuir isothermMaghemite nanoparticlesSelective metal removal
This study investigated the applicability of maghemite (γ-Fe2O3) nanoparticles for the selective removal of toxic heavy metals from electroplating wastewater. The maghemite nanoparticles of 10nm were synthesized using a sol–gel method and characterized by X-ray diffraction (XRD) and transmission electron microscopy (TEM). The surface area of the nanoparticles was determined to be 198m2∕g using the Brunauer–Emmett–Teller method. Batch experiments were carried out to determine the adsorption kinetics and mechanisms of Cr(VI), Cu(II), and Ni(II) by maghemite nanoparticles. The adsorption process was found to be highly pH dependent, which made the nanoparticles selectively adsorb these three metals from wastewater. The adsorption of heavy metals reached equilibrium rapidly within 10min and the adsorption data were well fitted with the Langmuir isotherm. Regeneration studies indicated that the maghemite nanoparticles undergoing successive adsorption–desorption processes retained original metal removal capacity. Mechanism studies using TEM, XRD, and X-ray photoelectron spectroscopy suggested that the adsorption of Cr(VI) and Cu(II) could be due to electrostatic attraction and ion exchange, and the adsorption of Ni(II) could be as a result of electrostatic attraction only.
1
10 nm maghemite (γ-Fe₂O₃) nanoparticles synthesized by sol–gel exhibited a high specific surface area of 198 m²/g.
2
Heavy-metal adsorption reached equilibrium rapidly, within 10 minutes, and the data were well described by the Langmuir isotherm.
3
Maghemite nanoparticles selectively removed Cr(VI), Cu(II), and Ni(II) from electroplating wastewater through strongly pH-dependent adsorption.
4
Mechanistic analyses indicated electrostatic attraction and ion exchange for Cr(VI) and Cu(II), whereas Ni(II) adsorption involved electrostatic attraction בלבד.
5
Successive adsorption–desorption regeneration cycles preserved the nanoparticles’ original metal-removal capacity.

Maghemite (γ-Fe2O3) nanoparticles applied to electroplating wastewater containing Cr(VI), Cu(II), and Ni(II)

Selective heavy-metal adsorption performance, pH dependence, kinetics, regeneration capacity, and adsorption mechanisms

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2006-06-16
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Irene M.C. Lo
Guohua Chen
Jing Hu
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