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Removal of Arsenic Using a Cationic Polymer Gel Impregnated with Iron Hydroxide
Published on: June 28, 2019
Graphene oxide-carbon nanotube-magnetite nanocomposites for efficient arsenic removal from aqueous solutions
Pham The Tan1, Le Thi Thu Hien1, Nguyen Ngoc Anh2
1Hung Yen University of Technology and Education Khoai Chau Distr. Hung Yen Province Vietnam.
Abstract:
In this study, graphene oxide-carbon nanotube-magnetite (GO/CNT/Fe3O4) nanocomposites were synthesized via a co-precipitation method for wastewater treatment. The obtained results indicated that Fe3O4 nanoparticles exhibited a spherical-shaped morphology, with an average diameter of around 20 nm, and decorated the surface of GO and CNTs. The adsorption data fitted well with the Langmuir isothermal model, exhibiting a coefficient of R 2 > 0.998, and the adsorption kinetics followed the pseudo-second-order model. This indicated that the adsorption mechanism involved surface complexation between adsorbents and As(iii) ions rather than electrostatic interactions. The As(iii) removal results also indicated that the GO/CNT/Fe3O4 nanocomposites exhibited a significantly enhanced adsorption capacity (q max) of 128.5 mg g-1 compared with those of CNT/Fe3O4 (106.3 mg g-1) and GO/Fe3O4 (113.9 mg g-1) composites. In addition, GO/CNT/Fe3O4 nanocomposites exhibited the highest adsorption efficiency of up to 99.18%. The coexisting ions, such as phosphate and sulfate, showed a negligible influence on the adsorption of As(iii) in solutions. The obtained results demonstrated that the GO/CNT/Fe3O4 nanocomposites could be promising candidates for the removal of arsenic and other contaminants from aqueous solutions.

