首页> 外文期刊>Journal of Nanoparticle Research >Enhanced removal of chromate from aqueous solution by sequential adsorption–reduction on mesoporous iron–iron oxide nanocomposites
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Enhanced removal of chromate from aqueous solution by sequential adsorption–reduction on mesoporous iron–iron oxide nanocomposites

机译:通过在中孔铁-氧化铁纳米复合材料上进行顺序吸附-还原,可增强从水溶液中去除铬酸盐的能力

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The adsorption behavior of mesoporous iron nanocomposites was investigated with respect to chromate [Cr(VI)] removal from aqueous solutions to consider its application for purifying chromate-contaminated wastewaters. These nanocomposites were prepared by borohydride reduction in aqueous solutions containing varying concentrations of acetone as co-solvent. Using batch methods, enhanced adsorption of Cr(VI) on the nanocomposite surface was achieved at neutral pH conditions, which subsequently resulted in Cr(VI) reduction to Cr(III). The Langmuir model was found to excellently describe the adsorption process, offering a maximum adsorptive capacity of 34.1 mg/g for composites prepared with 50 % acetone concentration. The Cr(VI) removal efficiency of these iron nanocomposites is strongly dependent on the acetone concentration, as evident from their (1) increased surface area (141.1 m2/g) compared to conventional iron nanoparticles (33.2 m2/g), and (2) highly porous and acicular structure, which efficiently traps Cr(VI) through adsorption. X-ray photoelectron spectroscopy analysis of Cr(III) on the nanocomposite surface confirmed that Cr(VI) removal from solution was achieved by sequential adsorption–reduction.
机译:研究了介孔铁纳米复合材料对水溶液中铬酸盐[Cr(VI)]的吸附行为,以考虑其在净化铬酸盐污染废水中的应用。这些纳米复合材料是通过在含有不同浓度的丙酮作为助溶剂的水溶液中将硼氢化物还原而制备的。使用分批方法,在中性pH条件下实现了Cr(VI)在纳米复合材料表面的增强吸附,随后将Cr(VI)还原为Cr(III)。发现Langmuir模型可以很好地描述吸附过程,对于50%丙酮浓度的复合材料,其最大吸附能力为34.1 mg / g。这些铁纳米复合材料的Cr(VI)去除效率在很大程度上取决于丙酮的浓度,这是因为与传统的铁纳米颗粒(33.2)相比,它们的(1)表面积增加(141.1 m 2 / g) m 2 / g),以及(2)多孔且针状的结构,可通过吸附有效地捕获Cr(VI)。纳米复合材料表面上的Cr(III)的X射线光电子能谱分析证实,从溶液中去除Cr(VI)是通过顺序吸附还原来实现的。

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