4.6 Article

Achieving high adsorption capacity and ultrafast removal of methylene blue and Pb2+ by graphene-like TiO2@C

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.colsurfa.2018.10.079

Keywords

TiO2 nanosheets; Lead adsorption; Methylene blue adsorption; Superabsorbent

Funding

  1. Natural Science Foundation of China [21377099]
  2. State Key Laboratory of Solidification Processing [SKLSP201721]
  3. Anhui Provincial Education Department [gxyqZD2016245, gxyq2018062]
  4. West Anhui University [WXZR201713, WXZR201729, WGKQ201702022]
  5. polymer materials modification engineering technology center of West Anhui University

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Water pollution from heavy metal ions and organic have threatened human health and the removal of those pollutions from wastewater has become a critical issue around the world. Herein, we synthesized the ultrathin, high surface area graphene-like TiO2@C adsorbent via a simple solvothermal process. Benefiting from the unique structure, abundant active functional groups and high surface area (417 m(2) g(-1)), the TiO2@C-2 exhibited high adsorption capacities of Pb2+ (331.7 mg/g) and methylene blue (444.8 mg/g). In addition, the adsorption equilibriums of graphene-like can be achieved within 2 min. The FTIR and XPS analysis proving that the high adsorption capacities attribute to hydroxyl groups, hydrogen bonding/or electrostatic. This investigation not only provides a new insight to design TiO2@C hybrid adsorbent but also demonstrates its promising application in removal heavy metals and organic pollutions from aqueous solution.

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