Division 1.1 - Inorganic Trace Analysis, Federal Institute for Materials Research and Testing (BAM), Richard-Willstätter-Str. 11, 12489, Berlin, Germany.
, Gembitzer Str. 23, 13053, Berlin, Germany.
Anal Bioanal Chem. 2021 Sep;413(21):5279-5289. doi: 10.1007/s00216-021-03497-z. Epub 2021 Jul 23.
A recently introduced inductively coupled plasma-time-of-flight-mass spectrometer (ICP-ToF-MS) shows enhanced sensitivity compared to previous developments and superior isotope ratio precision compared to other ToF and commonly used single-collector ICP-MS instruments. Following this fact, an improvement for isotope dilution ICP-MS using the new instrumentation has been reported. This study aimed at investigating whether this improvement also meets the requirements of species-specific isotope dilution using GC/ICP-MS, where short transient signals are recorded. The results of the analysis of monomethylmercury (MMHg) of a sediment reference material show that isotope ratio precision of ICP-MS instruments equipped with quadrupole, sector-field, and time-of-flight mass analyzers is similar within a broad range of peak signal-to-noise ratio when analyzing one isotopic system. The procedural limit of quantification (LOQ) for MMHg, expressed as mass fraction of Hg being present as MMHg, w(Hg), was similar as well for all investigated instruments and ranged between 0.003 and 0.016 μg/kg. Due to the simultaneous detection capability, the ICP-ToF-MS might, however, be more favorable when several isotopic systems are analyzed within one measurement. In a case study, the GC/ICP-ToF-MS coupling was applied for analysis of MMHg in sediments of Finow Canal, a historic German canal heavily polluted with mercury. Mass fractions between 0.180 and 41 μg/kg (w(Hg)) for MMHg, and 0.056 and 126 mg/kg (w(Hg)) for total mercury were found in sediment samples taken from the canal upstream and downstream of a former chemical plant.
最近引入的电感耦合等离子体质谱-飞行时间质谱仪(ICP-ToF-MS)与以前的发展相比具有更高的灵敏度,与其他飞行时间和常用的单收集器 ICP-MS 仪器相比具有更高的同位素比值精度。鉴于这一事实,已经报道了使用新仪器改进同位素稀释 ICP-MS。本研究旨在调查这种改进是否也符合使用 GC/ICP-MS 进行物种特异性同位素稀释的要求,其中记录短暂的瞬态信号。对沉积物标准物质中单甲基汞(MMHg)的分析结果表明,配备四极、扇形场和飞行时间质量分析器的 ICP-MS 仪器在分析一个同位素系统时,在较宽的峰信噪比范围内,同位素比值精度相似。MMHg 的分析程序定量限(LOQ),以存在的 MMHg 的汞质量分数 w(Hg)表示,对于所有研究的仪器也相似,范围在 0.003 到 0.016 μg/kg 之间。由于同时检测能力,当在一次测量中分析多个同位素系统时,ICP-ToF-MS 可能更有利。在一个案例研究中,GC/ICP-ToF-MS 联用用于分析芬诺运河沉积物中的 MMHg,芬诺运河是一条历史悠久的德国运河,受到汞的严重污染。在从前的化工厂上游和下游的运河沉积物样品中,发现 MMHg 的质量分数在 0.180 和 41 μg/kg(w(Hg))之间,总汞的质量分数在 0.056 和 126 mg/kg(w(Hg))之间。