Nickel-metal-organic framework nanobelt based composite membranes for efficient Sr2+ removal from aqueous solution

被引:55
作者
Cheng, Junye [1 ,2 ]
Liu, Kaili [1 ,3 ]
Li, Xin [1 ]
Huang, Lei [4 ]
Liang, Jie [3 ]
Zheng, Guangping [2 ]
Shan, Guangcun [1 ]
机构
[1] Beihang Univ, Sch Instrumentat Sci & Optoelect Engn, 37 XueYuan Rd, Beijing 100083, Peoples R China
[2] Hong Kong Polytech Univ, Dept Mech Engn, Kowloon, Hong Kong 999077, Peoples R China
[3] Beihang Univ, Sch Environm & Space Engn, Beijing 100191, Peoples R China
[4] Cent South Univ, Sch Met & Environm, Changsha 410083, Peoples R China
基金
国家重点研发计划;
关键词
Metal-organic framework (MOF) nanobelts; Graphene oxide; Radioactive waste; Strontium ions; Adsorption; TITANATE NANOFIBERS; WASTE; IONS; ADSORPTION; STRONTIUM; CAPTURE; CESIUM; LEVEL; FABRICATION; ADSORBENTS;
D O I
10.1016/j.ese.2020.100035
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The sorption removal of radionuclides Sr2+ using a freestanding functional membrane is an interesting and significant research area in the remediation of radioactive wastes. Herein, a novel self-assembled membrane consisting of metal-organic framework (MOF) nanobelts and graphene oxides (GOs) are synthesized through a simple and facile filtration method. The membrane possesses a unique interwove morphology as evidenced from SEM images. Batch experiments suggest that the GO/Ni-MOF composite membrane could remove Sr2+ ions from aqueous solutions and the Sr2+ adsorption capacity and efficiency of the GO/Ni-MOF composite membrane is relevant to the MOF content in the composite. Thus, the dominant interaction mechanism was interface or surface complexation, electrostatic interaction as well as ion substitution. The maximum effective sorption of Sr2+ over GO/Ni-MOF membrane is 32.99% with 2 mg composite membrane containing a high content of Ni-MOF at 299 K in 100 mg/L Sr2+ aqueous solution. The FT-IR and XPS results suggest that the synergistic effect between GO and Ni-MOF is determinant in the sorption Sr2+ process. The GO/Ni-MOF composite membrane is demonstrated to have the advantages of efficient removal of Sr2+, low cost and simple synthesis route, which is promising in the elimination of radionuclide contamination. (C) 2020 The Author(s). Published by Elsevier B.V. on behalf of Chinese Society for Environmental Sciences, Harbin Institute of Technology, Chinese Research Academy of Environmental Sciences.
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页数:10
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