Preparation of 2D nitrogen-doped magnetic FeC/C by in-situ self-assembled double-template method for enhanced removal of Cr(VI).

Preparation of 2D nitrogen-doped magnetic FeC/C by in-situ self-assembled double-template method for enhanced removal of Cr(VI).

Su, Qiaohong;Su, Zhi;Xie, Wenyu;Tian, Chen;Su, Xintai;Lin, Zhang;
Environmental pollution (Barking, Essex : 1987) 2020 Vol. 263 pp. 114374
163
su2020preparationenvironmental

Abstract

Porous carbon, which can be functionalized, is considered as a potential carbon material. Herein, two-dimensional (2D) nitrogen-doped magnetic FeC/C (NMC) was prepared by a simple carbonization method using potassium humate (HA-K) as raw material. Remarkably, two templates, g-CN and KCl, were formed in situ during the carbonization process, which provide the necessary conditions for the formation of 2D NMC. The NMC was comprehensively studied by different characterization methods. The results show that NMC has a large surface area and mesoporous structure. The prepared NMC-0.50 was used to test the removal performance of Cr(VI). The effects of pH value, coexisting ions and time on Cr(VI) removal performance were investigated, and the adsorption kinetics, isotherm and thermodynamics were studied. The results showed that the adsorption isotherm model of NMC-50 accorded with the Langmuir model, and the maximum adsorption capacity was 423.73 mg g. The reaction mechanism of Cr(VI) is adsorption and redox reaction. In addition, NMC-0.50 exhibit high selectivity, separability and regeneration performance. A convenient means for the synthesis of NMC was designed in this work, and demonstrate that NMC has practical value as an adsorbent.

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