Graphene oxide functionalized magnetic nanoparticles as adsorbents for removal of phthalate esters

被引:4
作者
Lili Yin
Yuexin Lin
Li Jia
机构
[1] South China Normal University,MOE Key Laboratory of Laser Life Science & Institute of Laser Life Science, College of Biophotonics
来源
Microchimica Acta | 2014年 / 181卷
关键词
Graphene oxide; Magnetic nanoparticles; Removal; Phthalate esters;
D O I
暂无
中图分类号
学科分类号
摘要
We show that magnetic nanoparticles can be functionalized with graphene oxide (GO-MNPs) in two reaction steps, and that such nanoparticles can be used as adsorbents for the removal of phthalate esters (PAEs) from water samples. The GO-MNPs were characterized by scanning electron microscopy, transmission electron microscopy, Fourier-transform infrared spectroscopy, zeta potential, and vibrating sample magnetometer. The impacts of contact time, sample pH, ionic strength and sample volume on the adsorption process were investigated. The maximum adsorption capacity for diethyl phthalate was calculated to be 8.71 mg g−1 according to the Langmuir adsorption isotherm. The adsorption efficiency was tested by removal of PAEs. More than 99 % of the total quantity of PAEs (0.12 mg L−1) in 500 mL real water samples can be removed when GO-MNPs (275–330 mg) were used as an adsorbent. In addition, other species (estriol and fluorene) containing benzene rings were also almost completely removed with the PAEs using GO-MNPs, indicating that GO-MNPs are suitable for the removal of the species containing π-electron system through π-π interactions.
引用
收藏
页码:957 / 965
页数:8
相关论文
共 153 条
  • [11] Poustka J(2004)Influence of water solubility, side-chain degradability, and side-chain structure on the degradation of phthalic acid esters under methanogenic conditions Desalination 162 121-128
  • [12] Jonsson S(2004)Application of membrane techniques to water purification. Removal of phthalates Chemosphere 54 849-857
  • [13] Baun A(2004)Monitoring the sonochemical degradation of phthalate esters in water using solid-phase microextraction Microporous Mesoporous Mater 67 143-150
  • [14] Huang G(2009)Highly hydrophobic TiO Desalin Water Treat 11 288-293
  • [15] Sun H(2003) pillared clay for photocatalytic degradation of organic compounds in water Mar Pollut Bull 46 780-783
  • [16] Song Z(2006)Treatment of dyeing wastewater by hollow fiber membrane biological reactor J Environ Sci Health A 41 235-248
  • [17] Wittassek M(2004)Evaluation of nonwoven polypropylene oil sorbents in marine oil-spill recovery Sep Purif Technol 38 233-239
  • [18] Angerer J(2011)Removal of phthalate esters from aqueous solutions by chitosan bead Chem Soc Rev 40 4464-4474
  • [19] Kolossa-Gehring M(2012)Removal of phthalate on modified activated carbon: application to the treatment of industrial wastewater J Hazard Mater 229–230 20-28
  • [20] Schäfer S(2013)Functionalized magnetic nanoparticles as chemosensors and adsorbents for toxic metal ions in environmental and biological fields Chem Soc Rev 42 8821-8834