Leopold K, Harwardt L, Schuster M, Schlemmer G
Technische Universität München, Arbeitsgruppe für Analytische Chemie, Lichtenbergstrasse 4, D-85747 Garching, Germany.
Talanta. 2008 Jul 15;76(2):382-8. doi: 10.1016/j.talanta.2008.03.010. Epub 2008 Mar 21.
A fully automated flow injection (FI) system utilizing the extraordinary oxidation power of bromine monochloride (BrCl) for the transformation of dissolved mercury species to Hg(2+) and oxidation of dissolved organic carbon (DOC) has been developed and coupled to cold vapor (CV) atomic fluorescence spectrometry (AFS) for highly sensitive mercury detection. The system can be applied to natural waters, sea water as well as freshwater and provides a detection limit as low as 16 pg Hg l(-1) from a sample volume of 7 ml. The relative standard deviation is about 4-10%. A 3-fold measurement of one sample is completely processed within 15 min. Dissolved organic carbon, chloride and iodide ions are tolerated in concentrations of 15 mg DOC l(-1), >21 g Cl(-)l(-1), and 10 mg I(-)l(-1). Validation of the proposed method yielded a good recovery of total mercury in a moorland water sample and in the certified reference material ORMS-3, river water. Investigation of eight real water samples with mercury concentrations in the range of 0.3-1.4 ng l(-1) also confirmed the suitability of the proposed method.
已开发出一种全自动流动注射(FI)系统,该系统利用一氯化溴(BrCl)的超强氧化能力将溶解态汞物种转化为Hg(2+)并氧化溶解有机碳(DOC),并与冷蒸气(CV)原子荧光光谱法(AFS)联用进行高灵敏度汞检测。该系统可应用于天然水、海水以及淡水,从7 ml样品体积中可提供低至16 pg Hg l(-1)的检测限。相对标准偏差约为4 - 10%。对一个样品进行3次测量在15分钟内可完全完成。溶解有机碳、氯离子和碘离子的耐受浓度分别为15 mg DOC l(-1)、>21 g Cl(-)l(-1)和10 mg I(-)l(-1)。对所提方法的验证在一个泥炭地水样以及经认证的参考物质ORMS - 3(河水)中实现了总汞的良好回收率。对8个汞浓度在0.3 - 1.4 ng l(-1)范围内的实际水样的研究也证实了所提方法的适用性。