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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Solid sampling-electrothermal vaporization-inductively coupled plasma mass spectrometry for the direct determination of Hg in different materials using isotope dilution with a gaseous phase for calibration
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Solid sampling-electrothermal vaporization-inductively coupled plasma mass spectrometry for the direct determination of Hg in different materials using isotope dilution with a gaseous phase for calibration

机译:固体采样-电热汽化-电感耦合等离子体质谱法,使用同位素稀释和气相色谱法直接测定不同材料中的汞

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This paper evaluates the potential of electrothermal vaporization-inductively coupled plasma mass spectrometry(ETV-ICPMS)for the direct determination of Hg in solid samples,using a ~200Hg-enriched gaseous phase for calibration based on isotope dilution.Three different samples were studied,BCR CRM 320 River sediment,IAEA-086 Hair and a real(wet)freshwater fish sample(Ml).The samples selected show important differences in their matrix composition,and especially the fish sample constitutes a challenge as a result of its high water content(approx= 80%).The main conclusion of the work is that the calibration approach investigated succesfully corrects for all the matrix effects(suppression)observed during Hg vaporization,allowing accurate values to be obtained in all cases.Moreover,practically the same operating conditions could be used for all sample types.The method finally proposed presents interesting features for the direct determination of this challenging element in solid samples,such as:a low sample consumption(a few milligrams),a high sample throughput(10 min/sample),a low limit of detection(6 ng g~(-1))and a reduced risk of analyte losses or contamination.Precision values depend on the homogeneity of the sample studied,and are typically in the vicinity of 10% RSD,except for the more inhomogenous river sediment(18% RSD).
机译:本文评估了使用电热汽化-电感耦合等离子体质谱(ETV-ICPMS)直接测定固体样品中的汞的潜力,该方法使用了约200Hg的富集气相以同位素稀释为基础进行校准,研究了三种不同的样品, BCR CRM 320河流沉积物,IAEA-086毛发和真实的(湿)淡水鱼样品(Ml)。所选样品显示出它们的基质组成有重要差异,尤其是鱼样品由于其高含水量而构成挑战(大约= 80%)。这项工作的主要结论是,所研究的校准方法成功地校正了汞汽化过程中观察到的所有基体效应(抑制),从而在所有情况下均能获得准确的值。最后提出的方法提出了有趣的特征,可以直接测定固体样品中的这一具有挑战性的元素,例如如:低样品消耗量(几毫克),高样品通量(10分钟/样品),低检测限(6 ng g〜(-1))和降低分析物损失或污染的风险。取决于所研究样品的均质性,通常在RSD的10%附近,除了较不均匀的河流沉积物(RSD的18%)。

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