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首页> 外文期刊>Chemical engineering journal >Removal of uranium (VI) from aqueous solution by amidoxime functionalized superparamagnetic polymer microspheres prepared by a controlled radical polymerization in the presence of DPE
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Removal of uranium (VI) from aqueous solution by amidoxime functionalized superparamagnetic polymer microspheres prepared by a controlled radical polymerization in the presence of DPE

机译:在DPE存在下,通过受控的自由基聚合反应制备的mid胺肟官能化超顺磁性聚合物微球从水溶液中去除铀(VI)

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A novel magnetic sorbent (AO-Fe3O4/P(GMA-AA-MMA) was prepared by grafting amidoxime groups onto the surface of superparamagnetic polymer microspheres prepared by a novel controlled radical polymerization technology named DPE method based on 1,1-diphenylethylene (DPE) as radical controlling agent, and characterized by Fourier transform infrared (FOR), transmission electron microscopy (TEM), X-ray photoelectron spectra (XPS) and vibrating sample magnetometer (VSM). The synthesized magnetic sorbent was applied to adsorb uranium (VI) from aqueous solutions and could be easily separated by an external magnetic field. Effect of pH, contact time, temperature, and initial U(VI) concentration on adsorption of U(VI) were investigated. An optimum sorption capacity of 200.5 mg g(-1) was obtained under the current experimental condition. The sorption of U(VI) on the magnetic sorbent obeyed the Langmuir model, and was mainly attributed to surface complexation via the coordination of U(VI) ions with amidoxime groups. Meanwhile, AO-Fe3O4/P(GMA-AA-MMA) could also selectively adsorb U(VI) in aqueous solution containing co-existing ions efficiently. Furthermore, the desorption studies showed AO-Fe3O4/P(GMA-AA-MMA) could be used repeatedly and sorption capacity did not have any noticeable loss after five cycles. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过将胺肟肟基团接枝到超顺磁性聚合物微球表面制备了一种新型的磁性吸附剂(AO-Fe3O4 / P(GMA-AA-MMA),这种新型超吸附磁性聚合物微球是通过一种基于DPE方法的新型受控自由基聚合技术制备的,该技术基于1,1-二苯乙烯(DPE) )作为自由基控制剂,并通过傅里叶变换红外(FOR),透射电子显微镜(TEM),X射线光电子能谱(XPS)和振动样品磁强计(VSM)进行表征,并将合成的磁性吸附剂吸附到铀(VI)上。 )从水溶液中分离出来并很容易被外部磁场分离。研究了pH,接触时间,温度和初始U(VI)浓度对U(VI)吸附的影响。最佳吸附量为200.5 mg g( -1)是在当前实验条件下获得的,U(VI)在磁性吸附剂上的吸附遵循Langmuir模型,并且主要归因于U(VI)离子与mid胺肟类。同时,AO-Fe3O4 / P(GMA-AA-MMA)还可以有效地选择性吸附含共存离子的水溶液中的U(VI)。此外,解吸研究表明,AO-Fe3O4 / P(GMA-AA-MMA)可以重复使用,并且吸附能力在五个循环后没有任何明显的损失。 (C)2015 Elsevier B.V.保留所有权利。

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