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Selective and Fast Adsorption of Perfluorooctanesulfonate from Wastewater by Magnetic Fluorinated Vermiculite

机译:磁性氟化Ver石对废水中全氟辛烷磺酸的选择性快速吸附

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摘要

A novel magnetic fluorinated adsorbent with selective and fast adsorption of perfluorooctanesulfonate (PFOS) was synthesized via a simple ball milling of Fe_3O_4 and vermiculite loaded with a cationic fluorinated surfactant. The loaded Fe_3O_4 nanoparticles increased the dispersibility of fluorinated vermiculite (F-VT) in water and allowed the magnetic separability. The nanosized Fe_3O_4 was homogeneously embedded into the adsorbent surfaces, improving the hydrophilicity of F-VT external surface, and this hybrid adsorbent still kept the hydrophobic fluorinated interlayer structure. With this unique property, Fe_3O_4-loaded F-VT has very fast and selective adsorption for PFOS in the presence of other compounds, due to the fluorophilicity of C-F chains intercalated in the adsorbent interlayers. This novel adsorbent has a high sorption capacity for PFOS, exhibiting PFOS removal from fire-fighting foam wastewater that is much higher than that of powdered activated carbon and resin due to its high selectivity for PFOS. The used Fe_3O_4-loaded F-VT was successfully regenerated by methanol and reused five times without reduction in PFOS removal and magnetic performance. The Fe_3O_4-loaded F-VT demonstrates promising application for PFOS removal from real wastewater.
机译:通过Fe_3O_4和负载有阳离子氟化表面活性剂的ver石的简单球磨,合成了一种具有选择性和快速吸附全氟辛烷磺酸盐(PFOS)的新型磁性氟化吸附剂。负载的Fe_3O_4纳米颗粒提高了氟化ver石(F-VT)在水中的分散性,并实现了磁分离性。纳米尺寸的Fe_3O_4被均匀地嵌入吸附剂表面,提高了F-VT外表面的亲水性,并且这种杂化吸附剂仍然保持了疏水的氟化中间层结构。凭借这种独特的性能,由于在吸附剂中间层中插入的C-F链具有亲氟性,因此在其他化合物存在下,负载有Fe_3O_4的F-VT对PFOS具有非常快速和选择性的吸附。这种新型吸附剂对全氟辛烷磺酸具有很高的吸附能力,由于其对全氟辛烷磺酸的选择性高,因此从消防泡沫废水中去除的全氟辛烷磺酸比粉状活性炭和树脂要高得多。用过的装载有Fe_3O_4的F-VT已通过甲醇成功再生,并重复使用了五次,而不会降低PFOS的去除和磁性能。负载Fe_3O_4的F-VT展示了从实际废水中去除PFOS的有希望的应用。

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  • 来源
    《Environmental Science & Technology》 |2017年第14期|8027-8035|共9页
  • 作者单位

    State Key Joint Laboratory of Environment Simulation and Pollution Control (SKLESPC), Beijing Key Laboratory for Emerging Organic Contaminants Control, School of Environment, Tsinghua University, Beijing, China,Stockbridge School of Agriculture, University of Massachusetts, Amherst, MA, United States;

    State Key Joint Laboratory of Environment Simulation and Pollution Control (SKLESPC), Beijing Key Laboratory for Emerging Organic Contaminants Control, School of Environment, Tsinghua University, Beijing, China;

    Key Laboratory of Pollution Ecology and Environmental Engineering, Institute of Applied Ecology, Chinese Academy of Science, Shenyang, China;

    State Key Joint Laboratory of Environment Simulation and Pollution Control (SKLESPC), Beijing Key Laboratory for Emerging Organic Contaminants Control, School of Environment, Tsinghua University, Beijing, China;

    State Key Joint Laboratory of Environment Simulation and Pollution Control (SKLESPC), Beijing Key Laboratory for Emerging Organic Contaminants Control, School of Environment, Tsinghua University, Beijing, China;

    State Key Joint Laboratory of Environment Simulation and Pollution Control (SKLESPC), Beijing Key Laboratory for Emerging Organic Contaminants Control, School of Environment, Tsinghua University, Beijing, China;

    State Key Joint Laboratory of Environment Simulation and Pollution Control (SKLESPC), Beijing Key Laboratory for Emerging Organic Contaminants Control, School of Environment, Tsinghua University, Beijing, China;

    State Key Joint Laboratory of Environment Simulation and Pollution Control (SKLESPC), Beijing Key Laboratory for Emerging Organic Contaminants Control, School of Environment, Tsinghua University, Beijing, China;

    Stockbridge School of Agriculture, University of Massachusetts, Amherst, MA, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 13:57:40

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