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Enhancing the Adsorption Capacity of Hematite by Manganese Doping: Facile Synthesis and its Application in the Removal of Congo Red

机译:锰掺杂提高赤铁矿的吸附能力:简便的合成及其在去除刚果红中的应用

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This work aims to provide a facile method for the preparation of Mna??doped hematite microrods and reveals the relationship between Mn doping and the enhanced adsorption properties. The adsorption performance of hematite could be greatly enhanced by Mn doping. The maximal adsorption capacity of the Mna??doped ?±a??Fe2O3 is calculated to be 84.54a??mg/g, which exhibits obviously enhanced adsorption capacity as compared to the una??doped ?±a??Fe2O3 (33.02a??mg/g). To further understand the adsorption process, the adsorption kinetic as well as thermodynamic behaviors are carefully investigated. The results suggest that the adsorption process of CR onto the adsorbents follows the pseudoa??seconda??order kinetic model. Meanwhile, the adsorption process can be designated to be a Langmuir process. The adsorption capacities of CR vary as a function of Mn contents, which are regarded as the synergistic effect between surface areas and pore sizes.
机译:这项工作的目的是提供一种制备Mna-掺杂的赤铁矿微棒的简便方法,并揭示了Mn掺杂与增强吸附性能之间的关系。锰的掺杂可以大大提高赤铁矿的吸附性能。计算得出,Mnaδ掺杂的α±aδFe2O3的最大吸附容量为84.54aδmg/ g,与未掺杂γδa的Fe2O3(33.02 a ?? mg / g)。为了进一步了解吸附过程,我们仔细研究了吸附动力学和热力学行为。结果表明,CR在吸附剂上的吸附过程遵循拟十二阶二级动力学模型。同时,可以将吸附过程指定为朗缪尔过程。 CR的吸附能力随Mn含量的变化而变化,这被认为是表面积和孔径之间的协同效应。

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