Application of Graphene Oxide-MnFe2O4 Magnetic Nanohybrids as Magnetically Separable Adsorbent for Highly Efficient Removal of Arsenic from Water

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作者
Pham Thi Lan Huong
Le Thanh Huy
Vu Ngoc Phan
Tran Quang Huy
Man Hoai Nam
Vu Dinh Lam
Anh-Tuan Le
机构
[1] Hanoi University of Science and Technology (HUST),Department of Nanoscience and Nanotechnology, Advanced Institute for Science and Technology (AIST)
[2] Hung Yen University of Technology and Education,Faculty of Chemistry and Environment Technology
[3] National Institute of Hygiene and Epidemiology (NIHE),Institute of Materials Science
[4] Vietnam Academy of Science and Technology (VAST),undefined
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Adsorption isotherm; MnFe; O; -GO magnetic nanohybrid; adsorbent; arsenic removal;
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摘要
In this work, a functional magnetic nanohybrid consisting of manganese ferrite magnetic nanoparticles (MnFe2O4) deposited onto graphene oxide (GO) nanosheets was successfully synthesized using a modified co-precipitation method. The as-prepared GO-MnFe2O4 magnetic nanohybrids were characterized using x-ray diffraction, transmission electron microscopy, Fourier transformed infrared spectroscopy, and vibrating sample magnetometer measurements. Adsorption experiments were performed to evaluate the adsorption capacities and efficient removal of arsenic of the nanohybrid and compared with bare MnFe2O4 nanoparticles and GO nanosheets. Our obtained results reveal that the adsorption process of the nanohybrids was well fitted with a pseudo-second-order kinetic equation and a Freundlich isotherm model; the maximum adsorption capacity and removal efficiency of the nanohybrids obtained ~240.385 mg/g and 99.9% with a fast response of equilibrium adsorption time ~20 min. The larger adsorption capacity and shorter equilibrium time of the GO-MnFe2O4 nanohybrids showed better performance than that of bare MnFe2O4 nanoparticles and GO nanosheets. The advantages of reusability, magnetic separation, high removal efficiency, and quick kinetics make these nanohybrids very promising as low-cost adsorbents for fast and effective removal of arsenic from water.
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页码:2372 / 2380
页数:8
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