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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Hybrid ionic liquid-3D graphene-Ni foam for on-line preconcentration and separation of Hg species in water with atomic fluorescence spectrometry detection
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Hybrid ionic liquid-3D graphene-Ni foam for on-line preconcentration and separation of Hg species in water with atomic fluorescence spectrometry detection

机译:杂化离子液体 - 3D石墨烯-NI泡沫,用于在线前浓度和用原子荧光光谱检测分离水中的Hg物种

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摘要

A preconcentration method based on a novel hybrid sorption nanomaterial consisting in a 31) graphene-Ni foam functionalized with an ionic liquid (IL) was developed for Hg species determination. The capability of different phosphonium-ionic liquids (PILs) to functionalize the hybrid material and form ion-pairs with Hg(II) chlorocomplex was evaluated. A comparative study with PILs containing the trihexyl(tetradecyl)phosphonium cation but different anions (dicyanamide and decanoate) and trihexyl(tetradecyl)phosphonium chloride was performed. Inorganic Hg (InHg) species was selectively retained forming a chlorocomplex (HgCl42-) followed by its retention in a column filled with the IL-3D graphene-Ni foam material implemented in an on-line micro solid phase extraction system (mu SPE). The elution of Hg from the column was performed with SnCl2, which was also used as reducing agent for subsequent detection by cold vapor generation atomic fluorescence spectrometry (CV-AFS). Organic mercury species (OrgHg) were not retained on the sorption material of the column. The effect of several parameters determining the efficiency of the preconcentration and detection system (sample loading and elution flow rate, sample volume, instrumental conditions, etc.) was investigated. A sensitivity enhancement factor (EF) of 180 was achieved for InHg. The detection limit obtained after the preconcentration of 100 mL of sample was 3.6 ng L-1 of InHg. The relative standard deviation (RSD) was 4.1% (at 1 mu g L-1 InHg and n = 10) calculated from the peak height of the absorbance signals (Gaussian form and reproducible peaks). This work reports the first application of the IL-3D graphene-Ni foam in an on-line mu SPE preconcentration system for the speciation analysis of Hg in mineral, tap, and river water samples.
机译:基于用离子液体(IL)官能化的基于三种组成的新型杂化吸附纳米材料的预浓度法用于Hg物种测定。评价不同鏻离子液体(Pils)用Hg(II)氯基络合物官能化杂种材料和形成离子对的能力。进行含有三己基(四癸基)阳离子但不同阴离子(二氰胺和癸酸酯)和三己基(四癸基)氯化鏻的碱的对比研究。无机Hg(INHG)物种被选择性地保留形成氯磁性(HGCl42-),然后在填充有在线微固相萃取系统(MU SPE)中的IL-3D石墨烯-NI泡沫材料的柱中保持。用SnCl 2进行Hg的Hg洗脱,其也用作还原剂,用于通过冷蒸气产生原子荧光光谱法(CV-AFS)进行后续检测。有机汞种(ORGHG)未保留在柱的吸附材料上。研究了若干参数确定预浓缩和检测系统效率(样品加载和洗脱流速,样品体积,毒液等)的效果。为InHG实现了180的灵敏度增强因子(EF)。在100ml样品的前浓度下获得的检测限为3.6ng L-1的InHG。从吸光度信号的峰高(高斯形式和可重复峰值)计算的相对标准偏差(RSD)为4.1%(以1μg1-1inHg和n = 10)计算。该工作报告了IL-3D石墨烯-NI泡沫在线MU SPE前浓缩系统中的第一次应用,用于矿物质,龙头和河水样品中HG的物种分析。

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