首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Advanced oxidation using Fe_3O_4 magnetic nanoparticles and its application in mercury speciation analysis by high performance liquid chromatography-cold vapor generation atomic fluorescence spectrometry
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Advanced oxidation using Fe_3O_4 magnetic nanoparticles and its application in mercury speciation analysis by high performance liquid chromatography-cold vapor generation atomic fluorescence spectrometry

机译:Fe_3O_4磁性纳米粒子的高级氧化及其在高效液相色谱-冷蒸气发生原子荧光光谱法中的汞形态分析中的应用

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摘要

A novel, green and efficient post-column oxidation method using Fe_ 3O_4 magnetic nanoparticles (MNPs) was developed to on-line convert hydride generation/cold vapor generation (HG/CV) inactive species to their active species without microwave/UV irradiation. It was applied to high performance liquid chromatography HG/CV atomic fluorescence spectrometry (HPLC-HG/CV-AFS) to enable sensitive speciation analysis of both HG/CV inactive and active species. Inorganic mercury (Hg~(2+)), methylmercury (MeHg), ethylmercury (EtHg) and phenylmercury (PhHg) were selected as model compounds to validate the methodology. Separation of these mercury species was accomplished on a RP-C18 column with a mixture of acetonitrile and water (10: 90) at pH 6.8 containing 0.12% (m/v) l-cysteine as the mobile phase. In the presence of 0.6% (v/v) H_2O_2, on-line conversion of the organomercury species eluted from the HPLC column to Hg~(2+) was obtained using the advanced oxidation method at pH 2.0. Optimum conditions for the separation, oxidation and cold vapor generation were carefully investigated. The limits of detection (LODs) were 0.7, 1.1, 0.8 and 0.9 μg L~(-1) (as Hg) for Hg~(2+), MeHg, EtHg and PhHg, respectively, corresponding to 14, 22, 16 and 18 pg absolute detection limits for Hg~(2+), MeHg, EtHg and PhHg by using a 20 μL sample loop, which are comparable to or better than those previously reported. National Research Council Canada DORM-2 fish muscle tissue and several real water samples were analyzed to validate the accuracy of the proposed method.
机译:开发了一种新颖的,绿色高效的,使用Fe_3O_4磁性纳米粒子(MNPs)的柱后氧化方法,无需微波/紫外线照射即可将氢化物生成/冷蒸气生成(HG / CV)惰性物种在线转换为其活性物种。它已应用于高效液相色谱HG / CV原子荧光光谱法(HPLC-HG / CV-AFS),能够对HG / CV非活性和活性物种进行灵敏的形态分析。选择无机汞(Hg〜(2+)),甲基汞(MeHg),乙基汞(EtHg)和苯基汞(PhHg)作为模型化合物,以验证该方法的有效性。在RP-C18色谱柱上用乙腈和水(10:90)的混合物在pH 6.8下进行分离,这些混合物中含有0.12%(m / v)的L-半胱氨酸作为流动相。在0.6%(v / v)H_2O_2的存在下,使用先进的氧化方法在pH 2.0下,从HPLC柱洗脱的有机汞物种在线转化为Hg〜(2+)。仔细研究了分离,氧化和产生冷蒸气的最佳条件。 Hg〜(2 +),MeHg,EtHg和PhHg的检出限(LOD)分别为0.7、1.1、0.8和0.9μgL〜(-1)(以Hg计),分别对应于14、22、16和通过使用20μL样品定量环,对Hg〜(2 +),MeHg,EtHg和PhHg的18 pg绝对检测极限,与以前报道的相当或更好。加拿大国家研究委员会DORM-2鱼肌肉组织和几个真实的水样进行了分析,以验证该方法的准确性。

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