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Evaluation of the colloidal stability and adsorption performance of reduced graphene oxide-elemental silver/magnetite nanohybrids for selected toxic heavy metals in aqueous solutions

机译:还原氧化石墨烯-元素银/磁铁矿纳米杂化物对水溶液中某些有毒重金属的胶体稳定性和吸附性能的评估

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摘要

Reduced graphene oxide (rGO) hybridized with magnetite and/or elemental silver (rGO/magnetite, rGO/silver, and rGO/magnetite/silver) nanoparticles were evaluated as potential adsorbents for toxic heavy metal ions (Cd (II), Ni(II), Zn(II), Co(II), Pb(II), and Cu(II)). Although the deposition of iron oxide and silver nanoparticles on the rGO nanosheets played an inhibitory role in metal ion adsorption, the metal adsorption efficiency by the nanohybrids (NHs) was still higher than that reported for many other sorbents (e.g., activated biochar, commercial resins, and nanosized hydrated Zr(IV) oxide particles). X-ray photoelectron spectroscopy analyses revealed that complexation with deprotonated adsorbents and cation exchange was an important mechanism for Cd(II) ion removal by the rGO and NHs. Competitive adsorption tests using multi metals showed that the adsorption affinity of metal ions on the rGO and its NHs follows the order (Cu(II), Zn(II)) Ni(II) Co (II) (Pb(II), Cd(II)), which is similar to the order observed for single-metal adsorption experiments. These results can be explained by the destabilization abilities of the rGO and NHs, as well as the ionic radii of the considered metal ions. Our findings demonstrate the feasibility of using rGO-based NHs as highly efficient adsorbents for heavy metal removal from water.
机译:与磁铁矿和/或元素银(rGO /磁铁矿,rGO /银和rGO /磁铁矿/银)纳米颗粒混合的还原氧化石墨烯(rGO)被评估为有毒重金属离子(Cd(II),Ni(II) ),Zn(II),Co(II),Pb(II)和Cu(II))。尽管氧化铁和银纳米颗粒在rGO纳米片上的沉积在金属离子吸附中起抑制作用,但是纳米杂化物(NHs)对金属的吸附效率仍然高于许多其他吸附剂(例如,活性生物炭,商业树脂) ,以及纳米水合Zr(IV)氧化物颗粒)。 X射线光电子能谱分析表明,与去质子化的吸附剂络合和阳离子交换是rGO和NHs去除Cd(II)离子的重要机理。使用多种金属进行的竞争性吸附测试表明,金属离子在rGO及其NHs上的吸附亲合力的顺序为(Cu(II),Zn(II))> Ni(II)> Co(II)>(Pb(II) ,Cd(II)),与单金属吸附实验中观察到的顺序相似。这些结果可以通过rGO和NHs的去稳定能力以及所考虑的金属离子的离子半径来解释。我们的研究结果证明了使用基于rGO的NHs作为高效吸附剂从水中去除重金属的可行性。

著录项

  • 来源
    《Applied Surface Science》 |2019年第31期|8-17|共10页
  • 作者单位

    Kyungpook Natl Univ, Dept Environm Engn, 80 Daehak Ro, Daegu 41566, South Korea|US EPA, 919 Kerr Res Dr, Ada, OK 74820 USA;

    US EPA, 919 Kerr Res Dr, Ada, OK 74820 USA;

    Korea Army Acad Youngcheon, Dept Civil & Environm Engn, 495 Hogook Ro, Youngcheon 38900, Gyeongbuk, South Korea;

    Korea Army Acad Youngcheon, Dept Civil & Environm Engn, 495 Hogook Ro, Youngcheon 38900, Gyeongbuk, South Korea;

    US EPA, Groundwater Watershed & Ecosyst Restorat Div, Natl Risk Management Res Lab, Off Res & Dev, 919 Kerr Res Dr, Ada, OK 74820 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aggregation kinetics; Adsorption kinetics; Adsorption isotherms; Toxic heavy metal; XPS;

    机译:聚集动力学;吸附动力学;吸附等温线;有毒重金属;XPS;

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