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Green and facile approach for enhancing the inherent magnetic properties of carbon nanotubes for water treatment applications

机译:用于水处理应用中增强碳纳米管固有磁性的绿色便捷方法

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摘要

Current methods for preparing magnetic composites with carbon nanotubes (MCNT) commonly include extensive use of treatment with strong acids and result in massive losses of carbon nanotubes (CNTs). In this study we explore the potential of taking advantage of the inherent magnetic properties associated with the metal (alloy or oxide) incorporated in CNTs during their production. The as-received CNTs are refined by applying a permanent magnet to a suspension of CNTs to separate the high-magnetic fraction; the low-magnetic fraction is discarded with the solvent. The collected MCNTs were characterized by a suite of 10 diffraction and spectroscopic techniques. A key discovery is that metallic nano-clusters of Fe and/or Ni located in the interior cavities of the nanotubes give MCNTs their ferromagnetic character. After refinement using our method, the MCNTs show saturation magnetizations up to 10 times that of the as-received materials. In addition, we demonstrate the ability of these MCNTs to repeatedly remove atrazine from water in a cycle of dispersion into a water sample, adsorption of the atrazine onto the MCNTs, collection by magnetic attraction and regeneration by ethanol. The resulting MCNTs show high adsorption capacities (> 40 mg-atrazine/g), high magnetic response, and straightforward regeneration. The method presented here is simpler, faster, and substantially reduces chemical waste relative to current techniques and the resulting MCNTs are promising adsorbents for organic/chemical contaminants in environmental waters.
机译:用于制备具有碳纳米管(MCNT)的磁性复合材料的当前方法通常包括大量使用强酸处理,并且导致碳纳米管(CNT)的大量损失。在这项研究中,我们探索了在生产过程中利用与CNT中掺入的金属(合金或氧化物)相关的固有磁性能的潜力。通过将永久磁铁施加到CNT的悬浮液上以分离高磁性部分,可以精制所接收的CNT。低磁性部分随溶剂一起丢弃。所收集的MCNT通过一套10衍射和光谱技术进行表征。一个关键发现是,位于纳米管内腔中的Fe和/或Ni的金属纳米团簇赋予MCNT其铁磁特性。使用我们的方法精炼后,MCNT的饱和磁化强度高达所接受材料的10倍。此外,我们证明了这些MCNT能够以分散到水样的循环重复从水中去除at去津,将at去津吸附到MCNT上,通过磁吸引收集并通过乙醇再生。所得的MCNT显示出高吸附容量(> 40 mg-at去津/ g),高磁响应和直接再生。与目前的技术相比,此处介绍的方法更简单,更快,并且显着减少了化学废物,并且所得的MCNT是有希望的环境水中有机/化学污染物吸附剂。

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