Removal of fluoride from water by modified polypyrrole

被引:0
|
作者
Feng J. [1 ]
Wang X. [1 ]
Zhao X. [1 ]
Gong X. [2 ]
Yan W. [1 ]
机构
[1] Department of Environmental Engineering, School of Energy and Power Engineering, Xi'an Jiaotong University, Xi'an
[2] Yiwu Water Treatment Co., Ltd., Yiwu
来源
Yan, Wei (yanwei@xjtu.edu.cn) | 1600年 / Materials China卷 / 40期
关键词
Adsorption; Fluorine ion; Mechanism; Polypyrrole (PPy); Special morphology;
D O I
10.16085/j.issn.1000-6613.2020-1551
中图分类号
学科分类号
摘要
Modified polypyrrole (PPy) nanofibers with different diameters were synthesized by controlling the synthesis conditions and adding ARG, MO and α-CD+MO in the polymerization process, respectively. The physicochemical properties of the as-prepared PPy were characterized by field emission scanning electron microscopy (FESEM), transmission electron microscopy (TEM), Fourier transform infrared spectroscopy(FTIR), nitrogen adsorption desorption analysis (BET) and zeta potential analysis. The results showed that the specific surface area of PPy with special morphology was 7-10 times higher than that of traditional granular PPy. Compared with traditional granular PPy, the modified PPy with special morphology can reach the adsorption equilibrium within 10 min at room temperature and pH=5 when the initial concentration of F- was 3-5mg/L and the dosage was 2g/L. The concentration of F- can be reduced to less than 1mg/L in the Integrated Wastewater Discharge Standard (GB 5749-2006). The results indicated that the control of special morphology had a great influence on the adsorption of F- by PPy. In addition, the adsorption behavior was a spontaneous exothermic process, which can be well fitted by Langmuir model. The removal of F- by PPy was mainly the result of ion exchange. © 2021, Chemical Industry Press Co., Ltd. All right reserved.
引用
下载
收藏
页码:4036 / 4046
页数:10
相关论文
共 32 条
  • [11] its synthesis, properties and applications, Russian Chemical Reviews, 66, 5, pp. 489-505, (1997)
  • [12] KARTHIKEYAN M, SATHEESHKUMAR K K, ELANGO K P., Removal of fluoride ions from aqueous solution by conducting polypyrrole, Journal of Hazardous Materials, 167, 1, pp. 300-305, (2009)
  • [13] LI Chunlu, CHEN Nan, ZHAO Yanan, Et al., Polypyrrole-grafted peanut shell biological carbon as a potential sorbent for fluoride removal: sorption capability and mechanism, Chemosphere, 163, pp. 81-89, (2016)
  • [14] FENG Jiangtao, YAN Wei, ZHU Jinwei, Synthesis of novel hexagonal micro-sheet polypyrrole and micro-sheet polypyrrole with grooves in the presence of alpha-cyclodextrin/Acid Red G inclusion compounds, Synthetic Metals, 160, 9, pp. 939-945, (2010)
  • [15] FENG Jiangtao, LI Jingjing, LYU Wei, Et al., Synthesis of polypyrrole nano-fibers with hierarchical structure and its adsorption property of Acid Red G from aqueous solution, Synthetic Metals, 191, pp. 66-73, (2014)
  • [16] DAI Tingyang, LU Yun, Water-soluble methyl orange fibrils as versatile templates for the fabrication of conducting polymer microtubules, Macromolecular Rapid Communications, 28, 5, pp. 629-633, (2007)
  • [17] OMASTOVA M, TRCHOVA M, KOVAROVA J, Et al., Synthesis and structural study of polypyrroles prepared in the presence of surfactants, Synthetic Metals, 138, 3, pp. 447-455, (2003)
  • [18] LEOFANTI G, PADOVAN M, TOZZOLA G, Et al., Surface area and pore texture of catalysts, Catalysis Today, 41, 1, pp. 207-219, (1998)
  • [19] ZHANG X, BAI Renbi, TONG Yen Wah, Selective adsorption behaviors of proteins on polypyrrole-based adsorbents, Separation and Purification Technology, 52, 1, pp. 161-169, (2006)
  • [20] YU Yang, YU Ling, CHEN J P., Adsorption of fluoride by Fe-Mg-La triple-metal composite: adsorbent preparation, illustration of performance and study of mechanisms, Chemical Engineering Journal, 262, pp. 839-846, (2015)