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首页> 外文期刊>Science of the total environment >Assembly of three-dimensional ultralight poly(amidoxime)/graphene oxide nanoribbons aerogel for efficient removal of uranium(Ⅵ) from water samples
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Assembly of three-dimensional ultralight poly(amidoxime)/graphene oxide nanoribbons aerogel for efficient removal of uranium(Ⅵ) from water samples

机译:三维超轻的聚(偕胺肟)/石墨烯氧化物纳米波纹气凝胶,用于高效除去水样的铀(Ⅵ)

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摘要

Assembling graphene oxide nanoribbons (GONRs) into three-dimensional (3D) materials with controllable and desired structure is an effective way to expand their structural features and enable their practical applications. In this work, an ultralight 3D porous amidoxime functionalized graphene oxide nanoribbons aerogel (PAO/GONRs-A) was prepared via solvothermal polymerization method using acrylonitrile as monomer and GONRs as solid matrices for selective separation of uranium(Ⅵ) from water samples. The PAO/GONRs-A possessed a high nitrogen content (13.5%), low density (8.5 mg cm~(-3)), and large specific surface area (494.9 m~2 g~(-1)), and presented an excellent high adsorption capacity of uranium, with a maximum capacity of 2.475 mmol g~(-1) at a pH of 4.5, and maximum uranium-selectivity of 65.23% at a pH of 3.0. The results of adsorption experiments showed that U(Ⅵ) adsorption on PAO/GONRs-A was a pH-dependent, spontaneous and endothermic process, which was better fitted to the pseudo-second-order kinetic model and Langmuir isotherm model. Both X-ray photoelectron spec-troscopy (XPS) and density functional theory (DFT) calculations revealed that U(Ⅵ) adsorption on PAO/GONRs-A mainly did rely on the amidoxime groups anchored on the aerogel while UO_2(PAO)_2(H_2O)_3 was dominant after interaction of uranyl with PAO/GONRs-A. Therefore, as a candidate adsorbent, PAO/GONRs-A has a high potential for the removal of uranium from aqueous solutions.
机译:将石墨烯氧化物纳米杆(GONRS)与可控和所需的结构组装成三维(3D)材料是扩展其结构特征的有效方法,并实现其实际应用。在这项工作中,通过使用丙烯腈作为单体和GONR作为单体和用于选择性分离水样的固体基质,通过溶剂热聚合方法制备超型3D多孔酰胺官能化石墨烯氧化物纳米氧化物纳米氧化物PAO / GONRS-A具有高氮含量(13.5%),低密度(8.5mg cm〜(-3))和大的比表面积(494.9m〜2g〜(-1)),并提出了一个优异的铀的高吸附能力,最大容量为2.475mmol g〜(-1),pH值为4.5,最大铀选择性为65.23%,pH为3.0。吸附实验结果表明,U(Ⅵ)对PAO / GONRS-A的吸附是pH依赖性,自发性和吸热过程,其更好地安装在伪二阶动力学模型和Langmuir等温线模型中。 X射线光电晶体规格 - 镜像(XPS)和密度泛函理论(DFT)计算显示,PAO / GONRS-A的吸附主要依赖于锚固在气体上的偕胺肟基团(PAO)_2( H_2O)_3在铀酰与PAO / GONRS-A相互作用后占优势。因此,作为候选吸附剂,PAO / GONRS-A具有高潜力从水溶液中除去铀。

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  • 来源
    《Science of the total environment》 |2021年第15期|142686.1-142686.11|共11页
  • 作者单位

    State Key Laboratory of Nuclear Resources and Environment East China University of Technology Nanchang 330013 Jiangxi China;

    State Key Laboratory of Nuclear Resources and Environment East China University of Technology Nanchang 330013 Jiangxi China;

    State Key Laboratory of Nuclear Resources and Environment East China University of Technology Nanchang 330013 Jiangxi China;

    State Key Laboratory of Nuclear Resources and Environment East China University of Technology Nanchang 330013 Jiangxi China;

    Key Laboratory of Radiation Physics and Technology Ministry of Education Institute of Nuclear Science and Technology Sichuan University Chengdu 610064 China;

    State Key Laboratory of Nuclear Resources and Environment East China University of Technology Nanchang 330013 Jiangxi China;

    State Key Laboratory of Nuclear Resources and Environment East China University of Technology Nanchang 330013 Jiangxi China;

    State Key Laboratory of Nuclear Resources and Environment East China University of Technology Nanchang 330013 Jiangxi China;

    State Key Laboratory of Nuclear Resources and Environment East China University of Technology Nanchang 330013 Jiangxi China;

    State Key Laboratory of Nuclear Resources and Environment East China University of Technology Nanchang 330013 Jiangxi China;

    State Key Laboratory of Nuclear Resources and Environment East China University of Technology Nanchang 330013 Jiangxi China;

    State Key Laboratory of Nuclear Resources and Environment East China University of Technology Nanchang 330013 Jiangxi China;

    School of Chemical and Biomedical Engineering Nanyang Technological University Singapore 637459 Singapore;

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

    Graphene oxide nanoribbons; Aerogel; Amidoxime; Uranium(Ⅵ); Adsorption;

    机译:石墨烯氧化物纳米纤维;气凝胶;amidoxime;铀(ⅵ);吸附;

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