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Synthesis of Novel Poly(amidoxime) Grafted Multiwall Carbon Nanotube Gel and Uranium Adsorption

机译:新型聚(ami胺肟)接枝多壁碳纳米管凝胶的合成及铀吸附

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摘要

This is the first report on the synthesis of a new functional nanocomposite gel containing amidoxime functionalized multiwall carbon nanotube (AO-MWNT-FNC GEL). The surface morphology of AO-MWNT-FNC GEL was investigated by field emission scanning electron microscopy. The modification of gel with amidoxine groups was confirmed by Fourier transform infra red spectroscopy. The AO-MWNT-FNC GEL provides effective binding with uranium ions as was ascertained by X-ray photoelectron spectroscopy. The AO-MWNT-FNC GEL was utilized as the new adsorbent for the recovery of uranium ions from aqueous solution. UV-visible spectroscopy was used to monitor the adsorption capacity of the AO-MWNT-FNC GEL toward uranium ions. The influence of initial uranium ion concentration and solution pH on the adsorption capacity of the AO-MWNT-FNC GEL were studied in batch experiments. The new FNC-GEL designed in this study is distinguished by higher adsorption capacity for uranium ions due to the synergistic contributions from high surface area of MWNT and the functional AO groups in FNC-GEL and exhibits potential for efficient recovery of uranium ions.
机译:这是有关合成新型功能纳米复合凝胶的第一份报告,该复合纳米凝胶包含a胺肟官能化的多壁碳纳米管(AO-MWNT-FNC GEL)。用场发射扫描电子显微镜研究了AO-MWNT-FNC GEL的表面形貌。通过傅立叶变换红外光谱法证实了具有a胺肟基团的凝胶的修饰。 AO-MWNT-FNC GEL提供了与铀离子的有效结合,正如X射线光电子能谱所确定的那样。 AO-MWNT-FNC GEL被用作从水溶液中回收铀离子的新型吸附剂。紫外可见光谱法用于监测AO-MWNT-FNC GEL对铀离子的吸附能力。通过分批实验研究了初始铀离子浓度和溶液pH对AO-MWNT-FNC GEL吸附容量的影响。这项研究中设计的新型FNC-GEL的特点是,由于MWNT的高表面积和FNC-GEL中的功能性AO基团的协同作用,因此具有更高的铀离子吸附能力,并具有有效回收铀离子的潜力。

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