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超薄片层 g-CN 修饰氧化石墨烯水凝胶对四环素和铜的超共吸附。

Superhigh co-adsorption of tetracycline and copper by the ultrathin g-CN modified graphene oxide hydrogels.

机构信息

Guangzhou Key Laboratory Environmental Catalysis and Pollution Control, Guangdong Key Laboratory of Environmental Catalysis and Health Risk Control, School of Environmental Science and Engineering, Institute of Environmental Health and Pollution Control, Guangdong University of Technology, Guangzhou 510006, China.

Guangzhou Key Laboratory Environmental Catalysis and Pollution Control, Guangdong Key Laboratory of Environmental Catalysis and Health Risk Control, School of Environmental Science and Engineering, Institute of Environmental Health and Pollution Control, Guangdong University of Technology, Guangzhou 510006, China.

出版信息

J Hazard Mater. 2022 Feb 15;424(Pt B):127362. doi: 10.1016/j.jhazmat.2021.127362. Epub 2021 Sep 29.

Abstract

Development of economic and efficient absorbent for the simultaneous removal of antibiotics and heavy metals is needed. In this study, a three-dimensional porous ultrathin g-CN (UCN) /graphene oxide (GO) hydrogel (UCN-GH) was prepared by co-assembling of UCN and GO nanosheets via the facile hydrothermal reaction. Characterizations indicated that the addition of UCN significantly decreased the reduction of CO and O-CO related groups of GO during the hydrothermal reaction and introduced amine groups on UCN-GH. The UCN-GH exhibited excellent ability on the co-removal of Cu(II) (q = 2.0-2.5 mmol g) and tetracycline (TC) (q = 1.2-3.0 mmol g) from water. The adsorption capacities were increased as UCN mass ratio increasing. The mutual effects between Cu(II) and TC were examined through adsorption kinetics and isotherm models. Characterizations and computational chemistry analysis indicated that Cu(II) is apt to coordinate with the amine groups on UCN than with oxygen groups on GO, which accounts for the enhanced adsorption ability of UCN-GH. In the binary system, Cu(II) acts as a bridge between TC and UCN-GH enhanced the removal of TC. The effects of pH and regular salt ions on the removal of Cu(II)/TC were examined. Moreover, the prepared UCN-GH also showed comparable co-adsorption capacities in practical water/wastewater.

摘要

需要开发经济高效的吸附剂,以同时去除抗生素和重金属。在这项研究中,通过简便的水热反应将 UCN 和 GO 纳米片共组装,制备了一种三维多孔超薄片层 g-CN(UCN)/氧化石墨烯(GO)水凝胶(UCN-GH)。表征表明,UCN 的加入显著降低了水热反应过程中 CO 和 O-CO 相关基团还原的程度,并在 UCN-GH 上引入了胺基。UCN-GH 表现出优异的共去除水中 Cu(II)(q = 2.0-2.5 mmol g)和四环素(TC)(q = 1.2-3.0 mmol g)的能力。随着 UCN 质量比的增加,吸附容量增加。通过吸附动力学和等温线模型研究了 Cu(II)和 TC 之间的相互作用。表征和计算化学分析表明,Cu(II)更容易与 UCN 上的胺基而不是 GO 上的氧基团配位,这解释了 UCN-GH 增强的吸附能力。在二元体系中,Cu(II)作为 TC 和 UCN-GH 之间的桥梁,增强了 TC 的去除。考察了 pH 和常规盐离子对 Cu(II)/TC 去除的影响。此外,所制备的 UCN-GH 在实际水/废水中也表现出相当的共吸附容量。

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