4.7 Article

A facile synthesis of Fe3O4-charcoal composite for the sorption of a hazardous dye from aquatic environment

Journal

JOURNAL OF ENVIRONMENTAL MANAGEMENT
Volume 163, Issue -, Pages 163-173

Publisher

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jenvman.2015.08.011

Keywords

Charcoal; Composite; Methylene blue; Sorption; Isotherm; Kinetics; Regeneration

Funding

  1. Ministry of Minority Affairs (MoMA), Government of India
  2. University Grant Commission (UGC), New Delhi [F1-17.1/2012-13/MANF-2012-13-MUS-ASS-9763]

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Herein, we synthesized Fe3O4 charcoal composite using chemical precipitation technique and utilized it for the sorption of methylene blue from aqueous solution. The synthesized composite was characterized by Infra-red spectroscopy, N-2 adsorption-desorption isotherm, X-ray diffraction, selected area electron diffraction, transmission electron microscopy, and vibrating sample magnetometer. The composite depicts absorption bands conforming to Fe-O, -OH, C=O, and C-O vibrations. The composite was mesoporous in nature with a surface area of 387.30 m(2) g(-1). The observed diffraction planes correspond to face-centered cubic Fe3O4 and disordered graphitic carbon. The spherical Fe3O4 particles (average diameter similar to 13.8 nm) were uniformly distributed in the carbon matrix of the charcoal. The saturation and remanent magnetizations demonstrate its potential for magnetic separation and reuse. The composite showed dye sorption capacities of 97.49 mg g(-1) and 90.85 mg g(-1) in batch and fixed-bed system. Pseudo-second order kinetics and Temkin isotherm best represented the sorption data. The sorption process was endothermic, spontaneous, and administered by electrostatic, pi-pi dispersive interactions, film, and intraparticle diffusion. Microwave irradiations followed by methanol elution regenerated the dye-loaded composite with nearly no loss in sorption capacity. The recovery of energy and potential utilization of bottom ash enhances the prospective of Fe3O4 charcoal composite for industrial applications. (C) 2015 Elsevier Ltd. All rights reserved.

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