Preparation of graphene oxide composite nitrogen-doped carbon (GO@NCs) by one-step carbonization with enhanced electrosorption performance for U(VI)

碳化 石墨烯 复合数 碳纤维 氧化物 材料科学 氮气 吸附 电化学 纳米技术 化学工程 水溶液 无机化学 核化学 复合材料 电极 化学 有机化学 冶金 工程类 物理化学
作者
Meng Cao,Liman Chen,Wen-Da Xu,Jianzhang Gao,Yunyang Gui,Fuqiu Ma,Peng Liu,Yun Xue,Yongde Yan
出处
期刊:Journal of water process engineering [Elsevier BV]
卷期号:48: 102930-102930 被引量:23
标识
DOI:10.1016/j.jwpe.2022.102930
摘要

High-performance graphene oxide composite nitrogen-doped carbon ([email protected]) materials were prepared at different temperatures (600, 700 and 800 °C) by a one-step carbonization method. The electrosorption performances of [email protected] for U(VI) were investigated. The results showed that the specific surface area of [email protected] was 266.3 m2·g−1. The doped nitrogen mainly existed in the form of pyridine (N-6), pyridine (N-5), and quaternary-N (N-Q). The incorporation of nitrogen atoms and graphene oxide effectively improved the electrochemical performance of the material, and the maximum specific capacitance of [email protected] was 289.8 F·g−1. At the same time, nitrogen-containing functional groups improved the selectivity to uranium and weakened the repulsive effect of coexisting ions. Therefore, the removal efficiency of [email protected] electrode structure can reach 98.63 % at −1.2 V (vs. SCE, pH = 5). The maximum adsorption capacity of [email protected] was 879.2 mg·g−1, which was 4 times higher than that of simple adsorption (202.3 mg·g−1). The material had good cycle performance, and the capacity loss was less than 10 % after 5 cycles. The above results show that the [email protected] electrode had special potential applications in removing uranium from aqueous solutions, which provides a new and effective method for the treatment of uranium-containing wastewater. Graphene oxide composite nitrogen-doped carbon ([email protected]) can effectively separate uranium (VI) from the solution and reduce its threat to the environment and human body.
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