首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Preliminary investigation of direct sea-water analysis by inductively coupled plasma mass spectrometry using a mixed-gas plasma, flow injection and external calibration
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Preliminary investigation of direct sea-water analysis by inductively coupled plasma mass spectrometry using a mixed-gas plasma, flow injection and external calibration

机译:使用混合气体等离子体,流动注射和外部校准的电感耦合等离子体质谱法对海水进行直接分析的初步研究

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摘要

A method is described that allows the direct analysis of sea-water by inductively coupled plasma mass spectrometry (TCP-MS) using a simple external calibration without internal standardization. A 50 μL aliquot of sample is introduced by flow injection and diluted 2-fold with deionized distilled water on-line to an ICP-MS instrument. A 4% nitrogen-96% argon plasma, operated at a 2 mm greater sampling depth than optimal for sensitivity, provides robust operating conditions that greatly reduce non-spectroscopic interferences (i.e. matrix effects) while still maintaining sufficient sensitivity for analyte quantitation. This simple approach allowed the accurate determination of Mo in a sea-water certified reference material (NASS-5) using a 150 ms dwell time on a second-generation ICP-MS instrument. The determination of other elements should be possible with more recent and more sensitive ICP-MS instruments. Although this mixed-gas plasma also reduced the ArCl spectroscopic interference on As, the residual interference prevented accurate quantitation of As in sea-water. However, the approach may still be suitable for the determination of As (and other elements that suffer from spectroscopic interferences arising from the sample matrix) in samples where the troublesome matrix elements are less concentrated.
机译:描述了一种方法,该方法允许使用简单的外部校准通过电感耦合等离子体质谱法(TCP-MS)直接分析海水,而无需内部标准化。通过流动注射引入50μL等份试样,并用去离子蒸馏水在线稀释2倍至ICP-MS仪器。 4%的氮气-96%的氩气等离子体的采样深度比灵敏度的最佳值大2毫米,提供了稳健的工作条件,可大大减少非光谱干扰(即基质效应),同时仍保持足够的灵敏度以进行分析物定量。这种简单的方法允许在第二代ICP-MS仪器上使用150毫秒的保留时间来准确测定海水认证标准物质(NASS-5)中的Mo。使用更新的,更灵敏的ICP-MS仪器应该可以确定其他元素。尽管这种混合气体等离子体还减少了ArCl光谱对As的干扰,但残留干扰阻止了海水中As的准确定量。但是,该方法可能仍然适用于确定麻烦的基质元素集中程度较低的样品中的As(以及遭受样品基质引起的光谱干扰的其他元素)。

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