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Water-Dispersible Magnetite-Reduced Graphene Oxide Composites for Arsenic Removal

ACS Nano · 2010 · Vol. 4(7) · pp. 3979–3986
Vimlesh ChandraJaesung ParkYoung Nam ChunJungwoo LeeIn‐Chul HwangKwang S. Kim

Abstract

Magnetite-graphene hybrids have been synthesized via a chemical reaction with a magnetite particle size of approximately 10 nm. The composites are superparamagnetic at room temperature and can be separated by an external magnetic field. As compared to bare magnetite particles, the hybrids show a high binding capacity for As(III) and As(V), whose presence in the drinking water in wide areas of South Asia has been a huge problem. Their high binding capacity is due to the increased adsorption sites in the M-RGO composite which occurs by reducing the aggregation of bare magnetite. Since the composites show near complete (over 99.9%) arsenic removal within 1 ppb, they are practically usable for arsenic separation from water.

Graphene research and applicationsArsenic contamination and mitigationGraphene and Nanomaterials ApplicationsMagnetiteGrapheneSuperparamagnetismMaterials scienceArsenicAdsorptionComposite numberOxideChemical engineeringIron oxide

MeSH terms

AbsorptionArsenicGraphiteHydrogen-Ion ConcentrationKineticsOxidation-ReductionOxidesSpectrum Analysis, RamanTemperatureWaterWater Pollutants, ChemicalWater PurificationFerrosoferric Oxide
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