AGH University of Science and Technology, Al. Mickiewicza 30, 30-059 Kraków, Poland.
Talanta. 2013 Oct 15;115:675-80. doi: 10.1016/j.talanta.2013.06.037. Epub 2013 Jun 28.
Improvements to the application of a combined solid-phase microextraction followed by gas chromatography coupled to pyrolysis and atomic fluorescence spectrometry method (SPME-GC-AFS) for methylmercury (MeHg) determination in biota samples are presented. Our new method includes improvements in the methodology of determination and the quantification technique. A shaker instead of a stirrer was used, in order to reduce the possibility of sample contamination and to simplify cleaning procedures. Then, optimal rotation frequency and shaking time were settled at 800 rpm and 10 min, respectively. Moreover, the GC-AFS system was equipped with a valve and an argon heater to eliminate the effect of the decrease in analytical signal caused by the moisture released from SPME fiber. For its determination, MeHg was first extracted from biota samples with a 25% KOH solution (3h) and then it was quantified by two methods, a conventional double standard addition method (AC) and a modified matrix-matched calibration (MQ) which is two times faster than the AC method. Both procedures were successfully tested with certified reference materials, and applied for the first time to the determination of MeHg in muscle samples of goosander (Mergus merganser) and liver samples of white-tailed eagle (Haliaeetus albicilla) with values ranging from 1.19 to 3.84 mg/kg dry weight (dw), and from 0.69 to 6.23 mg kg(-1) dw, respectively.
本文介绍了一种改进的固相微萃取(SPME)-气相色谱-原子荧光光谱法(GC-AFS)联用技术,用于生物样品中甲基汞(MeHg)的测定。我们的新方法包括改进了测定方法和定量技术。采用振荡器代替搅拌器,以减少样品污染的可能性并简化清洗程序。然后,确定最佳的旋转频率和振荡时间分别为 800rpm 和 10min。此外,GC-AFS 系统配备了一个阀门和一个氩气加热器,以消除由 SPME 纤维释放的水分对分析信号下降的影响。对于其测定,首先用 25%的 KOH 溶液(3h)从生物样品中提取 MeHg,然后通过两种方法进行定量,即传统的双标准加入法(AC)和改进的基质匹配校准法(MQ),后者比 AC 法快两倍。两种方法均成功地用标准物质进行了测试,并首次应用于测定鹅(Mergus merganser)肌肉和白尾海雕(Haliaeetus albicilla)肝脏中的 MeHg,其值分别为 1.19-3.84mg/kg 干重(dw)和 0.69-6.23mg/kg dw。