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Synthesis of manganese dioxide/iron oxide/graphene oxide magnetic nanocomposites for hexavalent chromium removal

机译:二氧化锰/氧化铁/石墨烯氧化物磁性纳米复合材料用于六价铬的合成

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摘要

Effective removal of heavy metal ions from wastewater is one of the important environment issues. Here, manganese dioxide/iron oxide/graphene-based magnetic nanocomposites (MnO2/Fe3O4/graphene oxide and MnO2/Fe3O4/graphene) were prepared by an easy and effective two-step reaction and investigated for the removal of hexavalent chromium ion from water. The materials were characterized by transmission electron microscopy, Fourier-transform infrared spectroscopy, X-ray diffraction, vibrating sample magnetometry, and Brunauer-Emmett-Teller surface area measurement. MnO2/Fe3O4/graphene oxide (MnO2/Fe3O4/GO) synthesized at pH 5.0 was the most effective adsorption material among other samples synthesized under different conditions. The Langmuir isotherm model was consistent with the experimental data at different pH values. MnO2/Fe3O4/GO showed excellent adsorption capacities both at pH 5.0 (q(max) = 175.4 mg g(-1)) and pH 2.0 (q(max) = 193.1 mg g(-1)). Hexavalent chromium adsorption by MnO2/Fe3O4/GO was pH dependent. The adsorption kinetic data were best described by a pseudo-second-order model. MnO2/Fe3O4/GO was stable and easily recovered. These experimental results suggested that MnO2/Fe3O4/GO had great potential as an economic and efficient adsorbent of heavy metals from wastewater.
机译:从废水中有效去除重金属离子是重要的环境问题之一。在这里,二氧化锰/铁氧化物/基于石墨烯的磁性纳米复合材料锰(MnO 2 / Fe3O4的/石墨烯氧化物和MnO 2 / Fe3O4的/石墨烯)通过一个简单而有效的两步反应制备并研究了用于从水中去除六价铬离子。通过透射电子显微镜,傅里叶变换红外光谱,X射线衍射,振动样品磁体和Brunauer-Emmett-extress面积测量来表征材料。的MnO 2 / Fe3O4的/石墨烯氧化物(二氧化锰/ Fe3O4的/ GO)在pH5.0的合成是在不同条件下合成的其它样品中的最有效的吸附材料。 Langmuir等温模型是具有在不同pH值的实验数据是一致的。的MnO 2 / Fe3O4的/ GO表现出优异的吸附能力都在pH 5.0(Q(MAX)= 175.4毫克克(-1))和pH 2.0(Q(MAX)= 193.1毫克克(-1))。六价铬吸附的MnO 2 / Fe3O4的/ GO是pH依赖性的。吸附动力学数据最好通过伪二阶模型描述。二氧化锰/纳米Fe3O4 / GO是稳定和易于回收。这些实验结果表明,二氧化锰/纳米Fe3O4 / GO有很大的潜力,从废水中重金属的一种经济有效的吸附剂。

著录项

  • 来源
    《RSC Advances》 |2015年第67期|共9页
  • 作者单位

    Lanzhou Univ Coll Chem &

    Chem Engn Lanzhou 730000 Peoples R China;

    Lanzhou Univ Coll Chem &

    Chem Engn Lanzhou 730000 Peoples R China;

    Lanzhou Univ Coll Chem &

    Chem Engn Lanzhou 730000 Peoples R China;

    Lanzhou Univ Coll Chem &

    Chem Engn Lanzhou 730000 Peoples R China;

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

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