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首页> 外文期刊>Applied Surface Science >Morphology controlled synthesis of hierarchical structured Fe_2O_3 from natural ilmenite and its high performance for dyes adsorption
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Morphology controlled synthesis of hierarchical structured Fe_2O_3 from natural ilmenite and its high performance for dyes adsorption

机译:天然钛铁矿的形态控制合成Fe_2O_3的结构及其对染料的吸附性能

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摘要

A facile method using acid leachate of ilmenite as the precursor has been successfully developed to tailor the structure of Fe2O3. The morphology and structure of the final product can be controlled from nanoparticles, microcubes, rhombohedrons to microspheres by varying the synthetic parameters. Detailed characterization showed that the microspheres had a hierarchical structure and was actually consisted of nanoblocks subunits. A possible mechanism was proposed for the formation of the hierarchically structured Fe2O3 microspheres. Due to its large surface area and abundant functional groups, the Fe2O3 microspheres could efficiently remove organic dyes in aqueous solution. The measured maximum adsorption capacities were 723.8, 150.7, and 54.5 mg/g for Congo red, Methyl orange, and Methylene blue, respectively, which were generally higher than those for Fe2O3 with other structures reported in literature. This work provides a novel approach to using waste as the resource for the preparation of low-cost and efficient adsorbent materials.
机译:已经成功地开发了一种以钛铁矿的酸性浸出液为前体的简便方法,以调整Fe2O3的结构。最终产品的形态和结构可以通过改变合成参数来控制,从纳米颗粒,微立方体,菱面体到微球。详细的表征表明,微球具有层次结构,实际上是由纳米嵌段亚基组成的。提出了一种可能的机制来形成分层结构的Fe2O3微球。 Fe2O3微球由于具有较大的表面积和丰富的官能团,可以有效去除水溶液中的有机染料。实测的刚果红,甲基橙和亚甲基蓝的最大吸附容量分别为723.8、150.7和54.5 mg / g,通常高于文献中报道的具有其他结构的Fe2O3。这项工作提供了一种利用废物作为制备低成本高效吸附剂资源的新颖方法。

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