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Nanoporous Fe-Based Alloy Prepared by Selective Dissolution:An Effective Fenton Catalyst for Water Remediation

机译:通过选择性溶解制备的纳米多孔铁基合金:一种有效的Fenton水修复催化剂

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摘要

A fully nanoporous Fe-rich alloy, prepared by selective dissolution of melt-spun Fe43.5Cu56.5 ribbons, exhibits outstanding properties as a heterogeneous Fenton catalyst toward the degradation of methyl orange (MO) in aqueous solution. In addition, the ferromagnetic characteristics of this material enable its wireless manipulation toward specific locations within polluted wastewater. The influence of selective dissolution on the microstructure, sample morphology (surface and cross-section), elemental composition, and magnetic properties of the resulting nanoporous alloy is investigated. The dealloying procedure enhances the saturation magnetization and drastically increases the catalytic performance (i.e., the time required for full degradation of MO from the medium is reduced by a factor of approximately 2 by subjecting the Fe43.5Cu56.5 ribbons to prior dealloying). Remarkably, the effectiveness of this nanoporous material surpasses the results obtained by the homogeneous Fenton reaction using an equivalent concentration of Fe cations leached into the media from the nanoporous alloy. The different factors thatpromote the high catalytic activity are discussed. The outstandingcatalytic activity, together with the simplicity of the syntheticprocedure, makes this material very appealing for water remediationusing advanced Fenton processes.
机译:通过选择性熔解熔融纺丝的Fe43.5Cu56.5薄带而制备的完全纳米多孔的富铁合金,具有非均质Fenton催化剂的优异性能,可降解水溶液中的甲基橙(MO)。此外,这种材料的铁磁特性使其能够针对污染废水中的特定位置进行无线操作。研究了选择性溶解对所得纳米多孔合金的微观结构,样品形态(表面和横截面),元素组成和磁性的影响。脱合金过程增强了饱和磁化强度,并大大提高了催化性能(即,通过对Fe43.5Cu56.5碳带进行预先脱合金处理,从介质中完全降解MO所需的时间减少了约2倍)。显着地,这种纳米多孔材料的有效性超过了均质Fenton反应所获得的结果,该均匀Fenton反应使用的是等浓度的从纳米多孔合金中浸出到介质中的Fe阳离子。不同的因素讨论了促进高催化活性的方法。杰出的催化活性以及合成的简单性程序,使这种材料对水的修复非常有吸引力使用先进的Fenton流程。

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