4.7 Article

Magnetic microsphere to remove tetracycline from water: Adsorption, H2O2 oxidation and regeneration

Journal

CHEMICAL ENGINEERING JOURNAL
Volume 330, Issue -, Pages 191-201

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2017.07.054

Keywords

Magnetic microsphere; Tetracycline; Hydrogen peroxide; Adsorption and regeneration; Isotherms and kinetics

Funding

  1. National Natural Science Foundation of China [21337001]
  2. State Key Joint Laboratory of Environment Simulation and Pollution Control [16K05ESPCT, 17K03ESPCT]
  3. Major Science and Technology Program for Water Pollution Control and Treatment of China [2014ZX07305-001]

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Antibiotics emerge as potential ecological risk in the environment, and adsorption process is a promising way to remove such chemicals. We developed a simple way to produce a kind of magnetic polystyrene EDTA microsphere (MPEM), via solvothermal treatment with ferric ammonium oxalate. The resins acquired good adsorptive, oxidative and magnetic properties to remove tetracycline (TC) in water. The characterization revealed that magnetic nanoparticles had attached on the surface of microsphere, enhancing the adsorption and oxidation of TC molecule. The Langmuir model fitted the isotherms well with a maximum capacity of 166 mg/g. The rate constant of first order kinetics to remove TC by adsorption was 0.145 h(-1), while after adding H2O2, the rate constant rocketed to 2.36 h(-1). Meanwhile, MPEM capacity was also regenerated by catalyzing H2O2 oxidation, with the adsorption capacity remained 90% after 10 rounds of recycling. In addition, the mechanisms of adsorption and regeneration were also explored. This material with H2O2 oxidation realized adsorption, degradation, separation and reuse simultaneously, showing great potential to remove dissolved antibiotics like tetracycline and other pollutants from water environment. (C) 2017 Published by Elsevier B.V.

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