Laboratory of Environmental Nanotechnology and Health Effect, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China; State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China; University of Chinese Academy of Sciences, Beijing 100049, China.
Laboratory of Environmental Nanotechnology and Health Effect, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China; School of Environment, Hangzhou Institute for Advanced Study, UCAS, Hangzhou 310024, China.
J Environ Sci (China). 2022 May;115:403-410. doi: 10.1016/j.jes.2021.08.013. Epub 2021 Aug 27.
A simple and efficient dithizone-functionalized solid-phase extraction (SPE) procedure, online coupled with high-performance liquid chromatography (HPLC)-inductively coupled plasma mass spectrometry, was developed for the first time for enrichment and determination of ultra-trace mercury (Hg) species (inorganic divalent Hg (Hg(II)), methylmercury (CHHg(II)) and ethylmercury (CHHg(II)) in cereals and environmental samples. In the proposed method, functionalization of the commercial C column with dithizone, enrichment, and elution of the above Hg species can be completed online with the developed SPE device. A simple solution of 2-mercaptoethanol (1% (V/V)) could be used as an eluent for both the SPE and HPLC separation of Hg species, significantly simplifying the method and instrumentation. The online SPE method was optimized by varying dithizone dose, 2-mercaptoethanol concentration, and sample volume. In addition, the effect of pH, coexisting interfering ions, and salt effect on the enrichment was also discussed. Under the optimized conditions, the detection limits of Hg species for 5 mL water sample were 0.15 ng/L for Hg(II), 0.07 ng/L for CHHg(II), and 0.04 ng/L for CHHg(II) with recoveries in the range of 85%-100%. The developed dithizone-functionalized C SPE column can be reused after a single functionalization, which significantly simplifies the enrichment step. Moreover, the stability of Hg species enriched on the SPE column demonstrated its suitability for field sampling of Hg species for later laboratory analysis. This environment-friendly method offers a robust tool to detect ultra-trace Hg species in cereals and environmental samples.
首次开发了一种简单高效的二硫腙功能化固相萃取(SPE)程序,在线与高效液相色谱(HPLC)-电感耦合等离子体质谱(ICP-MS)相结合,用于富集和测定谷物和环境样品中痕量汞(Hg)形态(二价无机汞(Hg(II))、甲基汞(CHHg(II))和乙基汞(CHHg(II))。在提出的方法中,用二硫腙对商业 C 柱进行功能化,可在线完成上述 Hg 形态的富集和洗脱。开发的 SPE 装置可采用简单的 2-巯基乙醇溶液(1%(V/V))作为洗脱液,用于 SPE 和 HPLC 分离 Hg 形态,大大简化了方法和仪器。通过改变二硫腙剂量、2-巯基乙醇浓度和样品体积对在线 SPE 方法进行了优化。此外,还讨论了 pH、共存干扰离子和盐效应对富集的影响。在优化条件下,对于 5 mL 水样,Hg 形态的检测限为 Hg(II)为 0.15 ng/L,CHHg(II)为 0.07 ng/L,CHHg(II)为 0.04 ng/L,回收率在 85%-100%范围内。经单次功能化后,可重复使用开发的二硫腙功能化 C SPE 柱,大大简化了富集步骤。此外,SPE 柱上富集的 Hg 形态的稳定性表明其适合用于 Hg 形态的现场采样,以便以后进行实验室分析。这种环保方法为检测谷物和环境样品中的痕量 Hg 形态提供了一种强大的工具。