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通过原位自组装双模板法制备二维氮掺杂磁性 FeC/C 以增强 Cr(VI)的去除。

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

机构信息

School of Environment and Energy, The Key Laboratory of Pollution Control and Ecosystem Restoration in Industry Clusters (Ministry of Education), South China University of Technology, Guangzhou, Guangdong, 510006, China; College of Chemistry and Chemical Engineering, Xinjiang Normal University, Urumqi, 830054, Xinjiang, China.

College of Chemistry and Chemical Engineering, Xinjiang Normal University, Urumqi, 830054, Xinjiang, China.

出版信息

Environ Pollut. 2020 Aug;263(Pt B):114374. doi: 10.1016/j.envpol.2020.114374. Epub 2020 Mar 17.

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.

摘要

多孔碳可以进行功能化,被认为是一种有潜力的碳材料。在此,通过一种简单的碳化方法,以钾腐殖酸(HA-K)为原料,制备了二维(2D)氮掺杂磁性 FeC/C(NMC)。值得注意的是,在碳化过程中形成了两个原位模板,g-CN 和 KCl,为 2D NMC 的形成提供了必要的条件。通过不同的表征方法对 NMC 进行了综合研究。结果表明,NMC 具有较大的比表面积和介孔结构。制备的 NMC-0.50 用于测试 Cr(VI)的去除性能。考察了 pH 值、共存离子和时间对 Cr(VI)去除性能的影响,并研究了吸附动力学、等温线和热力学。结果表明,NMC-50 的吸附等温线模型符合 Langmuir 模型,最大吸附容量为 423.73mg/g。Cr(VI)的反应机制是吸附和氧化还原反应。此外,NMC-0.50 表现出高选择性、可分离性和再生性能。本工作设计了一种简便的 NMC 合成方法,并证明 NMC 作为吸附剂具有实际价值。

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