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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >MnO2 flowery nanocomposites for efficient and fast removal of mercury(II) from aqueous solution: a facile strategy and mechanistic interpretation
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MnO2 flowery nanocomposites for efficient and fast removal of mercury(II) from aqueous solution: a facile strategy and mechanistic interpretation

机译:MnO2流动纳米复合材料,用于高效和快速地去除水溶液中的汞(II):一个容易战略和机械解释

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We report the synthesis of MnO2 flowery nanocomposites consisting of MnO2 nanoflowers grown over the surface of clay nanomaterials using an easy and green approach. The MnO2 nanocomposites were explored as a cost-effective nanoadsorbent for mercury removal from aqueous solution and they demonstrated excellent efficiency towards mercury uptake. Monolayer molecular adsorption of Hg(II) was attained over the surface of the MnO2 nanocomposites and the experimental data acquired in the kinetic study demonstrated that the Hg(II) adsorption kinetics proceeded via a pseudo-second-order kinetic model. pH dependent adsorption study revealed that their sorption capacity increases until pH 7.0 and then gradually decreases with increasing pH. Apart from the experimental study, we have provided a mechanistic interpretation to illustrate the mechanism of kinetics and thermodynamics during Hg(II) adsorption. Theoretical understanding along with experimental results indicates a spontaneous and highly favorable Hg(II) uptake up to 50 degrees C, representing endothermicity of the adsorption process and then exothermicity above 50 degrees C, resulting in reduced sorption capacity. The exceptional adsorption performance of the MnO2 nanocomposites may be attributed to their negative surfaces, which facilitated the binding of positively charged Hg(I) ions through electrostatic interaction. Hence, MnO2 nanocomposites proved to be an effective and inexpensive nanoadsorbent for the removal of Hg(ii) from aqueous solution and may hold a promise for wastewater treatment.
机译:我们报道了使用易于绿色的方法在粘土纳米材料表面上生长的MnO2纳米母纳米复合材料的合成。将MNO2纳米复合材料探索为从水溶液中的汞清除的经济高层纳米造纸剂,并且它们对汞摄取的效率很好。在MNO2纳米复合材料的表面上获得了HG(II)的单层分子吸附,并且在动力学研究中获得的实验数据证明了通过伪二阶动力学模型进行的HG(II)吸附动力学。 pH依赖性吸附研究表明,它们的吸附能力增加直至pH7.0,然后随着pH的增加逐渐降低。除了实验研究之外,我们提供了机械解释,以说明在Hg(II)吸附过程中动力学和热力学的机制。与实验结果一起理论理解表明,高达50℃的自发性和高良好的Hg(ii)摄取,代表吸附过程的吸收性,然后放热以上50℃,导致吸附能力降低。 MnO2纳米复合材料的特殊吸附性能可能归因于它们的负面,这促进了带正电荷的Hg(I)离子通过静电相互作用的结合。因此,MNO2纳米复合材料被证明是一种用于从水溶液中除去Hg(II)的有效且廉价的纳米装载剂,并可保持废水处理的承诺。

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