Department of Biomedical Engineering and Environmental Sciences, National Tsing-Hua University, 30013 Hsinchu, Taiwan.
J Chromatogr A. 2009 Dec 18;1216(51):8933-8. doi: 10.1016/j.chroma.2009.10.061. Epub 2009 Oct 30.
We have combined short-column ion chromatographic separation and on-line photocatalyst-assisted vapor generation (VG) techniques with inductively coupled plasma mass spectrometry to develop a simple and sensitive hyphenated method for the determination of aqueous Hg(2+) and MeHg(+) species. The separation of Hg(2+) and MeHg(+) was accomplished on a cation-exchange guard column using a glutathione (GSH)-containing eluent. To achieve optimal chromatographic separation and signal intensities, we investigated the influence of several of the operating parameters of the chromatographic and photocatalyst-assisted VG systems. Under the optimized conditions of VG process, the shortcomings of conventional SnCl(2)-based VG techniques for the vaporization of MeHg(+) was overcome; comparing to the concentric nebulizer-ICP-MS system, the analytical sensitivity of ICP-MS toward the detection of Hg(2+) and MeHg(+) were also improved to 25- and 7-fold, respectively. With the use of our established HPLC-UV/nano-TiO(2)-ICP-MS system, the precision for each analyte, based on three replicate injections of 2 ng/mL samples of each species, was better than 15% RSD. This hyphenated method also provided excellent detection limits--0.1 and 0.03 ng/mL for Hg(2+) and MeHg(+), respectively. A series of validation experiments--analysis of the NIST 2672a Standard Urine Reference Material and other urine samples--confirmed further that our proposed method could be applied satisfactorily to the determination of inorganic Hg(2+) and MeHg(+) species in real samples.
我们将短柱离子色谱分离与在线光催化剂辅助汽相发生(VG)技术和电感耦合等离子体质谱相结合,开发了一种简单、灵敏的汞(II)和甲基汞(MeHg)的在线联用分析方法。采用含有谷胱甘肽(GSH)的洗脱液在阳离子交换保护柱上实现了 Hg(II)和 MeHg(+)的分离。为了达到最佳的色谱分离和信号强度,我们研究了色谱和光催化剂辅助 VG 系统的几个操作参数的影响。在优化的 VG 条件下,克服了传统的基于 SnCl2的 VG 技术在 MeHg(+)汽相发生方面的缺点;与同心雾化器-ICP-MS 系统相比,ICP-MS 对 Hg(II)和 MeHg(+)的检测灵敏度也分别提高了 25 倍和 7 倍。使用我们建立的 HPLC-UV/nano-TiO2-ICP-MS 系统,每个分析物的三个重复进样 2ng/mL 样品的精密度均优于 15%RSD。该联用方法还提供了优异的检测限——Hg(II)和 MeHg(+)分别为 0.1 和 0.03ng/mL。一系列验证实验——对 NIST 2672a 标准尿液参考材料和其他尿液样品的分析——进一步证实,我们提出的方法可以满意地应用于实际样品中无机 Hg(II)和 MeHg(+)的测定。