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A new vapor generation system for mercury species based on the UV irradiation of mercaptoethanol used in the determination of total and methyl mercury in environmental and biological samples by atomic fluorescence spectrometry

机译:一种基于巯基乙醇的紫外线照射的汞物种新的蒸气发生系统,该系统用于原子荧光光谱法测定环境和生物样品中的总汞和甲基汞

摘要

A new vapor generation system for mercury (Hg) species based on the irradiation of mercaptoethanol (ME) with UV was developed to provide an effective sample introduction unit for atomic fluorescence spectrometry (AFS). Preliminary investigations of the mechanism of this novel vapor generation system were based on GC-MS and FT-IR studies. Under optimum conditions, the limits of determination for inorganic divalence mercury and methyl mercury were 60 and 50 pg mL(-1), respectively. Certified reference materials (BCR 463 tuna fish and BCR 580 estuarine sediment) were used to validate this new method, and the results agreed well with certified values. This new system provides an attractive alternative method of chemical vapor generation (CVG) of mercury species compared to other developed CVG systems (for example, the traditional KBH4/NaOH-acid system). To our knowledge, this is the first systematic report on UV/ME-based Hg species vapor generation and the determination of total and methyl Hg in environmental and biological samples using UV/ME-AFS.
机译:基于巯基乙醇(ME)的紫外线照射,开发了一种用于汞(Hg)物质的新的蒸气发生系统,以提供一种用于原子荧光光谱法(AFS)的有效样品引入装置。对这种新型蒸汽发生系统机理的初步研究是基于GC-MS和FT-IR研究。在最佳条件下,无机当量汞和甲基汞的测定极限分别为60和50 pg mL(-1)。经认证的参考材料(BCR 463金枪鱼和BCR 580河口沉积物)用于验证该新方法,结果与认证值吻合良好。与其他已开发的CVG系统(例如,传统的KBH4 / NaOH-酸系统)相比,该新系统提供了一种有吸引力的汞物种化学蒸气生成(CVG)替代方法。据我们所知,这是有关基于UV / ME的汞物种蒸气生成以及使用UV / ME-AFS测定环境和生物样品中总汞和甲基汞的第一份系统报告。

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