绿色化学:利用磁性分散固相萃取技术通过 HR-CS ETAAS 同时富集和测定水样中的钒、镍、钛和镓。

IF 2.7 3区 化学 Q2 CHEMISTRY, ANALYTICAL
L Vázquez-Palomo, P Montoro-Leal, J C García-Mesa, M M López Guerrero, E Vereda Alonso
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引用次数: 0

摘要

本研究采用高分辨率-连续源电热原子吸收光谱仪(HR-CS ETAAS)同时测定水环境样品(自来水和海水样品)中的钒、钛、镍和镓。该系统的基础是将分析物保留在一种新型磁性纳米材料(M@GO 磁性氧化石墨烯)上,该材料由甲硫代水杨酸盐(MTS)功能化。加入 1 毫升硝酸(6%)并超声 5 分钟后,M@GO-MTS 与目标分析物之间形成的复合物被破坏。优化后的方法对钛的检出限为 0.71 μg L-1,对钒的检出限为 0.20 μg L-1,对镓的检出限为 0.04 μg L-1,对镍的检出限为 0.66 μg L-1。通过分析两种经认证的参考物质和测定加标环境水样中的分析物含量,证明了所建议方法的准确性。使用该方法得出的结果与标准参考物质的认证值十分吻合,自来水和海水样品的加标回收率在 94% 至 120% 之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Green chemistry: magnetic dispersive solid phase extraction for simultaneous enrichment and determination of V, Ni, Ti and Ga in water samples by HR-CS ETAAS.

This work presents a straightforward, highly sensitive, and cost-effective method for the simultaneous determination of V, Ti, Ni and Ga by high resolution-continuum source electrothermal atomic absorption spectrometer (HR-CS ETAAS) in aqueous environmental samples (tap and seawater samples). The system is based on retention of the analyte onto a novel magnetic nanomaterial (M@GO magnetic graphene oxide) functionalised with methylthiosalicilate (MTS). The formed complexes between the M@GO-MTS and the target analytes were broken, adding 1 mL of nitric acid (6%) and sonication for 5 min. The optimized method achieved detection limits of 0.71 μg L-1 for Ti, 0.20 μg L-1 for V, 0.04 μg L-1 for Ga, 0.66 μg L-1 for Ni. The accuracy of the proposed method was demonstrated by analysing two certified reference materials and by determining the analyte content in spiked environmental water samples. The results obtained using this method were in good agreement with the certified values of the standard reference materials, and the recoveries for the spiked tap water and seawater samples ranged from 94% to 120%.

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来源期刊
Analytical Methods
Analytical Methods CHEMISTRY, ANALYTICAL-FOOD SCIENCE & TECHNOLOGY
CiteScore
5.10
自引率
3.20%
发文量
569
审稿时长
1.8 months
期刊介绍: Early applied demonstrations of new analytical methods with clear societal impact
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