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采用在线离子交换色谱-电感耦合等离子体质谱法(ICP-MS)自动化分离、预浓缩和测量复杂基体中锶。

Automated separation, preconcentration and measurement of Sr in liquid samples with complex matrices by online ion exchange chromatography coupled with inductively coupled plasma mass spectrometry (ICP-MS).

机构信息

Environmental and Life Sciences Graduate Program, Trent University, 1600 West Bank Drive, Peterborough, K9L 0G2, ON, Canada.

Water Quality Center, Trent University, 1600 West Bank Drive, Peterborough, K9L 0G2, ON, Canada.

出版信息

Talanta. 2021 Jan 15;222:121488. doi: 10.1016/j.talanta.2020.121488. Epub 2020 Aug 4.

DOI:10.1016/j.talanta.2020.121488
PMID:33167208
Abstract

An online separation and preconcentration method, employing a lab-on-valve system using solid phase extraction, followed by inductively coupled plasma tandem mass spectrometry (ICP-MS/MS), was developed for the analysis of Sr. The Sr was separated from Zr, an isobaric interference present at high concentrations in many samples, and other matrix components using a dual-column setup (Eichrom DGA-B and Sr resins). Any remaining Zr was then chemically resolved from the Sr in the ICP-MS/MS using O and H reaction gases. The system requires small sample volumes (10 mL), minimal sample preparation compared to traditional radiometric and other MS techniques and has a processing time of 22 min per sample. Based on a 10 mL sample size, the system limit of detection, limit of quantification and method detection limit (MDL) were 0.47 Bq L (0.09 pg L), 1.57 Bq L (0.32 pg L) and 1.79 Bq L (0.34 pg L), respectively. The robustness of the system and suitability for use in various sample matrices was demonstrated using spiked lake water, spiked groundwater, spiked seawater and radioactive water samples. Recovery of the IAEA 2018 Proficiency Test Exercise water sample (n = 5) was 99% with an RSD of 11.9%. The method thus provides a powerful tool for the rapid analysis of low levels of Sr in various water/wastewater samples.

摘要

建立了一种在线分离和预浓缩方法,采用阀上实验室系统,结合固相萃取,随后采用电感耦合等离子体质谱串联质谱(ICP-MS/MS)进行分析。该方法用于 Sr 的分析。使用双柱装置(Eichrom DGA-B 和 Sr 树脂),Sr 可与 Zr 分离,Zr 是许多样品中高浓度存在的同量异位干扰物,以及其他基质成分。然后,使用 O 和 H 反应气体,在 ICP-MS/MS 中将任何剩余的 Zr 与 Sr 进行化学分离。该系统与传统放射性和其他 MS 技术相比,所需样品量较小(10 mL),样品制备量最小,且每个样品的处理时间为 22 分钟。基于 10 mL 样品量,系统的检出限、定量限和方法检出限(MDL)分别为 0.47 Bq L(0.09 pg L)、1.57 Bq L(0.32 pg L)和 1.79 Bq L(0.34 pg L)。通过添加湖水、地下水、海水和放射性水样品,证明了该系统的稳健性和适用于各种样品基质的适用性。IAEA 2018 能力验证水样(n=5)的回收率为 99%,相对标准偏差为 11.9%。因此,该方法为快速分析各种水/废水样品中的低水平 Sr 提供了有力工具。

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