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Selective solid-phase extraction of nickel(II) using a surface-imprinted silica gel sorbent

机译:使用表面印迹硅胶吸附剂选择性固相萃取镍(II)

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A new Ni(II)-imprinted amino-functionalized silica gel sorbent with excellent selectivity for nickel(II) was prepared by an easy one-step reaction by combining a surface imprinting technique for selective solid-phase extraction (SPE) of trace Ni(II) in water samples prior to its determination by inductively coupled plasma atomic emission spectrometry (ICP-AES). Compared with non-imprinted polymer particles, the ion-imprinted polymers (IIPs) had higher selectivity and adsorption capacity for Ni(II). The maximum static adsorption capacity of the ion-imprinted and non-imprinted sorbent for Ni(II) was 12.61 and 4.25 mg g(-1), respectively. The relatively selective factor (alpha(r)) values of Ni(II)/Cu(II), Ni(II)/Co(II), Ni(II)/Zn(II) and Ni(II)/Pd(II) were 45.99, 32.83, 43.79 and 28.36, which were greater than 1. The distribution ratio (D) values of Ni(II)-imprinted polymers for Ni(II) were greatly larger than that for Cu(II), Co(II), Zn(II) and Pd(II). The detection limit (3 sigma) was 0.16 ng mL(-1). The relative standard deviation of the method was 1.48% for eight replicate determinations. The method was validated by analyzing two certified reference materials (GBW 08618 and GBW 08402), the results obtained is in good agreement with standard values. The developed method was also successfully applied to the determination of trace nickel in plants and water samples with satisfactory results. (c) 2006 Elsevier B.V. All rights reserved.
机译:通过一种简单的一步反应,通过结合表面印迹技术对痕量镍(SPE)进行选择性固相萃取(SPE),制备了一种对镍(II)具有优异选择性的新型镍(II)印迹氨基官能化硅胶吸附剂。 II)在水样品中,然后通过电感耦合等离子体原子发射光谱法(ICP-AES)测定。与非印迹聚合物颗粒相比,离子印迹聚合物(IIP)对Ni(II)具有更高的选择性和吸附能力。 Ni(II)的离子印迹和非印迹吸附剂的最大静态吸附容量分别为12.61和4.25 mg g(-1)。 Ni(II)/ Cu(II),Ni(II)/ Co(II),Ni(II)/ Zn(II)和Ni(II)/ Pd(II)的相对选择因子(alpha(r))值)分别为45.99、32.83、43.79和28.36,均大于1.Ni(II)印迹聚合物对Ni(II)的分布比(D)值大大大于Cu(II),Co(II ),Zn(II)和Pd(II)。检出限(3 sigma)为0.16 ng mL(-1)。对于八次重复测定,该方法的相对标准偏差为1.48%。该方法通过分析两种认证的参考材料(GBW 08618和GBW 08402)进行了验证,所获得的结果与标准值非常吻合。该方法还成功地用于植物和水样中痕量镍的测定,结果令人满意。 (c)2006 Elsevier B.V.保留所有权利。

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