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采用射频脉冲辉光放电飞行时间质谱法对粉末样品进行定量元素分析的同位素稀释质谱法。

Isotope dilution mass spectrometry for quantitative elemental analysis of powdered samples by radiofrequency pulsed glow discharge time of flight mass spectrometry.

机构信息

Department of Physical and Analytical Chemistry, Faculty of Chemistry, University of Oviedo, Julian Clavería 8, 33006 Oviedo, Spain.

出版信息

Talanta. 2013 Oct 15;115:657-64. doi: 10.1016/j.talanta.2013.06.024. Epub 2013 Jun 22.

Abstract

In recent years particular effort is being devoted to the development of pulsed glow discharges (PGDs) for mass spectrometry because this powering operation mode could offer important ionization analytical advantages. However, the capabilities of radiofrequency (RF) PGD coupled to a time of flight mass spectrometry (ToFMS) for accurate isotope ratio measurements have not been demonstrated yet. This work is focused on investigating different time positions along the pulse profile for the accurate measurement of isotope ratios. As a result, a method has been developed for the direct and simultaneous multielement determination of trace elements in powdered geological samples by RF-PGD-ToFMS in combination with isotope dilution mass spectrometry (IDMS) as an absolute measurement method directly traceable to the International System of Units. Optimized operating conditions were 70 W of applied radiofrequency power, 250 Pa of pressure, 2 ms of pulse width and 4 ms of pulse period, being argon the plasma gas used. To homogeneously distribute the added isotopically-enriched standards, lithium borate fusion of powdered solid samples was used as sample preparation approach. In this way, Cu, Zn, Ba and Pb were successfully determined by RF-PGD-ToF(IDMS) in two NIST Standard Reference Materials (SRM 2586 and SRM 2780) representing two different matrices of geological interest (soil and rock samples). Cu, Zn, Ba and Pb concentrations determined by RF-PGD-ToF(IDMS) were well in agreement with the certified values at 95% confidence interval and precisions below 12% relative standard deviation were observed for three independent analyses. Elemental concentrations investigated were in the range of 81-5770 mg/kg, demonstrating the potential of RF-PGD-ToF(IDMS) for a sensitive, accurate and robust analysis of powdered samples.

摘要

近年来,人们特别致力于开发脉冲辉光放电(PGD)用于质谱分析,因为这种供电操作模式可以提供重要的离子分析优势。然而,射频(RF)PGD 与飞行时间质谱(ToFMS)相结合用于精确同位素比测量的能力尚未得到证明。这项工作的重点是研究脉冲轮廓的不同时间位置,以实现同位素比的精确测量。结果,开发了一种方法,用于通过 RF-PGD-ToFMS 与同位素稀释质谱(IDMS)相结合,直接和同时测定粉末地质样品中的微量元素,IDMS 作为一种可直接追溯到国际单位制的绝对测量方法。优化的操作条件为 70 W 的射频功率、250 Pa 的压力、2 ms 的脉冲宽度和 4 ms 的脉冲周期,所用的等离子体气体为氩气。为了均匀分布添加的同位素浓缩标准,使用硼酸锂熔融粉末固体样品作为样品制备方法。通过这种方式,成功地通过 RF-PGD-ToF(IDMS)在两个具有不同地质意义的基质(土壤和岩石样品)的 NIST 标准参考物质(SRM 2586 和 SRM 2780)中测定了 Cu、Zn、Ba 和 Pb。在 95%置信区间内,RF-PGD-ToF(IDMS)测定的 Cu、Zn、Ba 和 Pb 浓度与证书值非常吻合,三个独立分析的精度低于 12%相对标准偏差。研究的元素浓度在 81-5770 mg/kg 范围内,证明了 RF-PGD-ToF(IDMS)对粉末样品进行灵敏、准确和稳健分析的潜力。

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