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首页> 外文期刊>RSC Advances >Monodispersed hierarchical gamma-AlOOH/Fe(OH)(3) micro/nanoflowers for efficient removal of heavy metal ions from water
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Monodispersed hierarchical gamma-AlOOH/Fe(OH)(3) micro/nanoflowers for efficient removal of heavy metal ions from water

机译:单分散的等级伽玛 - ALOOH / FE(OH)(3)微/纳射线,用于高效地从水中去除重金属离子

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摘要

Many nanomaterials have been reported for the removal of toxic inorganic metal ions. Some conventional micro-or nano-structured adsorbents are subject to serious aggregation. Here, well-dispersed, Fe(OH)(3) colloid nanoparticles have been effectively deposited onto the surfaces of hierarchical gamma-AlOOH nanostructures to form gamma-AlOOH/Fe(OH)(3) with hierarchical structures via an electrostatic attraction without forming large aggregates. The monodispersed g-AlOOH/Fe(OH)(3) with hierarchical structures have high specific surface areas and large pore volumes, which are used as adsorbents to remove anion species of As(V) and Cr(VI) from aqueous solution. The maximum capacities of the monodispersed gamma-AlOOH/Fe(OH)(3) with hierarchical structures for As(V) and Cr(VI) in this study are determined at 43.8 mg g(-1) and 13.1 mg g(-1), respectively, which are higher than those of the other metal oxide nanostructures reported to date. In addition, the adsorption rates of As(V) and Cr(VI) onto the monodispersed gamma-AlOOH/Fe(OH)(3) with hierarchical structures are rather fast. The gamma-AlOOH/Fe(OH)(3) hierarchical micro/nanoflower structures show high adsorption capacity for removing the anion species of As(V) and Cr(VI), demonstrating a promising potential in environmental remediation.
机译:据报道,许多纳米材料用于去除有毒无机金属离子。一些常规的微型或纳米结构化吸附剂受到严重的聚集。这里,分散良好的Fe(OH)(3)粒子纳米颗粒已经有效地沉积在分层γ-alooh纳米结构的表面上,以通过静电吸引而形成γ-alooh / Fe(OH)(3)而不形成大聚集体。具有分层结构的单分散的G-ALOOH / Fe(OH)(3)具有高比表面积和大孔体积,其用作吸附剂,以从水溶液中除去As(V)和Cr(VI)的阴离子种类。本研究中,具有(V)和Cr(VI)的分层结构的单分散γ-ALOOH / Fe(3)的最大容量在43.8mg g(-1)和13.1mg g(-1 )分别高于迄今为止报告的其他金属氧化物纳米结构的那些。此外,具有等级结构的单分散γ-AlOOH / Fe(OH)(3)上的作为(V)和Cr(VI)的吸附速率相当快。 γ-alooh / fe(OH)(3)分层微/纳米摩尔结构显示出除去作为(v)和Cr(vi)的阴离子物种的高吸附能力,证明了环境修复的有希望的潜力。

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  • 来源
    《RSC Advances 》 |2016年第8期| 共7页
  • 作者单位

    Huaibei Normal Univ Collaborat Innovat Ctr Adv Funct Composites Huaibei 235000 Peoples R China;

    Huaibei Normal Univ Collaborat Innovat Ctr Adv Funct Composites Huaibei 235000 Peoples R China;

    Huaibei Normal Univ Collaborat Innovat Ctr Adv Funct Composites Huaibei 235000 Peoples R China;

    Huaibei Normal Univ Collaborat Innovat Ctr Adv Funct Composites Huaibei 235000 Peoples R China;

    Huaibei Normal Univ Collaborat Innovat Ctr Adv Funct Composites Huaibei 235000 Peoples R China;

    Northwestern Polytech Univ Sch Mat Sci &

    Engn State Key Lab Solidificat Proc Ctr Nano Energy Mat Xian 710072 Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学 ;
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