• 文献标题:   Preparation of graphene oxide composite nitrogen-doped carbon (GO@NCs) by one-step carbonization with enhanced electrosorption performance for U(VI)
  • 文献类型:   Article
  • 作  者:   CAO M, CHEN LM, XU WD, GAO JZ, GUI YY, MA FQ, LIU P, XUE Y, YAN YD
  • 作者关键词:   nitrogendoped carbon, graphene oxide composite, electrosorption of uranium, uranium pollution remediation
  • 出版物名称:   JOURNAL OF WATER PROCESS ENGINEERING
  • ISSN:   2214-7144
  • 通讯作者地址:  
  • 被引频次:   2
  • DOI:   10.1016/j.jwpe.2022.102930 EA JUN 2022
  • 出版年:   2022

▎ 摘  要

High-performance graphene oxide composite nitrogen-doped carbon (GO@NCs) materials were prepared at different temperatures (600, 700 and 800 ?) by a one-step carbonization method. The electrosorption performances of GO@NCs for U(VI) were investigated. The results showed that the specific surface area of GO@NC-700 was 266.3 m(2).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 GO@NC-700 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 GO@NC-700 electrode structure can reach 98.63 % at-1.2 V (vs. SCE, pH = 5). The maximum adsorption capacity of GO@NC-700 was 879.2 mg.g(-1) performance, and the capacity loss was less than 10 % after 5 cycles. The above results show that the GO@NC700 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.Environmental implication: Graphene oxide composite nitrogen-doped carbon (GO@NCs) can effectively separate uranium (VI) from the solution and reduce its threat to the environment and human body. , which was 4 times higher than that of simple adsorption (202.3 mg.g(-1)). The material had good cycle