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首页> 外文期刊>Water SA >Dimethylglyoxime based ion-imprinted polymer for the determination of Ni(ll) ions from aqueous samples
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Dimethylglyoxime based ion-imprinted polymer for the determination of Ni(ll) ions from aqueous samples

机译:基于二甲基乙二肟的离子印迹聚合物,用于测定水性样品中的Ni(ll)离子

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摘要

A Ni(II)-dimethylglyoxime ion-imprinted polymer {Ni(II)-DMG IIP} was synthesised by the bulk polymerisation method. The morphology of the Ni(II)-DMG IIP and non-imprinted polymer were observed by scanning electron microscopy and the chemical structures were evaluated by infrared spectroscopy. Selectivity of the Ni(II)-DMG IIP was studied by analysing, using an inductively coupled plasma-optical emission spectrometer, for Ni(II) ions that were spiked with varying concentrations of Co(II), Cu(II), Zn(II), Pd(II), Fe(II), Ca(II), Mg(II), Na(I) and K(I) in aqueous samples. The studies revealed Ni(II) recoveries ranging from 93 to 100% in aqueous solutions with minimal interference from competing ions. Enrichment factors ranged from 2 to 18 with a binding capacity of 120 üg·g~(-1). Co(II) was the only ion found to slightly interfere with the determination of Ni(II). Selectivity studies confirmed that the Ni(II)-DMG IIP had very good selectivity, characterised by % RSD of less than 5%. The limits of detection and quantification were 3×10~(-4) üg·ml~(-1) and 9×l0~(-4)üg·mt~(-1), respectively. The accuracy of the method was validated by analysing a custom solution of certified reference material (SEP-3) and the concentration of Ni(II) obtained was in close agreement with the certified one. The Ni(II)-DMG IIP was successfully employed to trap Ni(II) ions from a matrix of sea, river and sewage water. It is believed that the Ni(II)-DMG IIP has potential to be used as sorbent material for pre-concentration of Ni(II) ions from aqueous solutions by solid-phase extraction.
机译:通过本体聚合法合成了Ni(II)-二甲基乙二肟肟离子印迹聚合物{Ni(II)-DMG IIP}。通过扫描电子显微镜观察Ni(II)-DMG IIP和非印迹聚合物的形态,并通过红外光谱评价其化学结构。 Ni(II)-DMG IIP的选择性通过使用电感耦合等离子体发射光谱仪分析了掺有不同浓度Co(II),Cu(II),Zn( II),Pd(II),Fe(II),Ca(II),Mg(II),Na(I)和K(I)。研究表明,水溶液中镍(II)的回收率范围从93%到100%,而竞争离子的干扰极小。富集因子为2〜18,结合能力为120 ug·g〜(-1)。 Co(II)是唯一发现会稍微干扰Ni(II)测定的离子。选择性研究证实,Ni(II)-DMG IIP具有非常好的选择性,其特征为RSD小于5%。检出限和定量检出限分别为3×10〜(-4)ug·ml〜(-1)和9×l0〜(-4)ug·mt〜(-1)。通过分析定制的参考标准物质(SEP-3)溶液验证了该方法的准确性,并且所获得的Ni(II)的浓度与认证标准物质非常吻合。 Ni(II)-DMG IIP已成功用于从海洋,河流和污水基质中捕获Ni(II)离子。据信,Ni(II)-DMG IIP具有用作通过固相萃取从水溶液中预富集Ni(II)离子的吸附剂材料的潜力。

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  • 来源
    《Water SA》 |2011年第3期|p.321-329|共9页
  • 作者单位

    Department of Chemistry, Rhodes University, PO Box 94, Grahamstown 6140, South Africa;

    Department of Chemistry, Rhodes University, PO Box 94, Grahamstown 6140, South Africa;

    Department of Chemistry, Rhodes University, PO Box 94, Grahamstown 6140, South Africa;

    Department of Chemistry, Rhodes University, PO Box 94, Grahamstown 6140, South Africa;

    Department of Chemistry, Rhodes University, PO Box 94, Grahamstown 6140, South Africa;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    nickel; polymer; dimethylglyoxime; interference;

    机译:镍;聚合物;二甲基乙二肟;干扰;

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