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Excellent fluoride removal properties of porous hollow MgO microspheres

New Journal of Chemistry · 2014 · Vol. 38(11) · pp. 5445–5452
LI Lian-xiangDi XuXiaoqin LiWenchao LiuYong Jia

Abstract

Porous hollow MgO microspheres were synthesized and characterized by X-ray diffraction, field emission scanning electron microscopy, transmission electron microscopy, and nitrogen adsorption–desorption isotherms. The removal properties of the MgO microspheres towards toxic fluoride were investigated, including adsorption kinetics, adsorption isotherms, and influences of pH and coexisting anions. The adsorption capacity was larger than 120 mg g−1 at a pH of 7.0. The effects of anions on fluoride removal were also investigated. The results indicated that phosphate was the greatest competitor of fluoride for adsorptive sites. In addition, the removal mechanism was revealed by Fourier transform infrared spectroscopy and X-ray photoelectron spectroscopy. The reaction of MgO and water molecules resulted in the formation of Mg(OH)2. The excellent adsorption properties towards fluoride resulted from the surface reaction between the generated Mg(OH)2 and fluoride in solution.

Fluoride Effects and RemovalGeochemistry and Elemental AnalysisLayered Double Hydroxides Synthesis and ApplicationsChemistryFluorideAdsorptionFourier transform infrared spectroscopyX-ray photoelectron spectroscopyScanning electron microscopeDesorptionInorganic chemistryTransmission electron microscopyNuclear chemistry

Funding

  • Natural Science Foundation of Anhui Province
Citations
190
FWCI
15.22
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57
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99%
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References
Fluoride removal from water by adsorption—A review
Chemical Engineering Journal · 2011 · 1,129 citations
Removal of fluoride from drinking water by adsorption onto alum-impregnated activated alumina
Separation and Purification Technology · 2006 · 399 citations
Hollow Micro‐/Nanostructures: Synthesis and Applications
Advanced Materials · 2008 · 2,959 citations
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