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采用溶液阳极辉光放电辅助蒸气发生电感耦合等离子体质谱法测定银、铋、镉、汞、铅、铊和锌-初步研究。

Determination of Ag, Bi, Cd, Hg, Pb, Tl, and Zn by inductively coupled plasma mass spectrometry combined with vapor generation assisted by solution anode glow discharge - A preliminary study.

机构信息

Wroclaw University of Science and Technology, Faculty of Chemistry, Division of Analytical Chemistry and Chemical Metallurgy, Wybrzeze Stanislawa Wyspianskiego 27, 50-370, Wroclaw, Poland.

Wroclaw University of Science and Technology, Faculty of Chemistry, Division of Analytical Chemistry and Chemical Metallurgy, Wybrzeze Stanislawa Wyspianskiego 27, 50-370, Wroclaw, Poland.

出版信息

Talanta. 2022 Aug 15;246:123500. doi: 10.1016/j.talanta.2022.123500. Epub 2022 Apr 22.

DOI:10.1016/j.talanta.2022.123500
PMID:35487012
Abstract

A new technique of vapor generation assisted by a microplasma was proposed for an inductively coupled plasma mass spectrometry (ICP MS). It was found that, by replacing a traditional pneumatic nebulizer with a microplasma (solution anode glow discharge, SAGD), analytical signals of Ag, Bi, Cd, Hg, Pb, Tl, and Zn were improved 8, 4, 13, 13, 9, 10, and 7 times, respectively. The main factor contributing to boosted analytical signal intensities was the higher analyte flux produced by the novel microplasma system. The measurement precision in SAGD-ICP MS was comparable to that achievable for ICP MS (with pneumatic nebulization), and it did not exceed 2%. The detection limits of Ag, Bi, Cd, Hg, Pb, Tl, and Zn in SAGD-ICP MS were 5, 2, 6, 5, 4, 10, and 20 ng L, respectively. The analytical performance of this method may be further improved if the observed memory effects could be minimized. To validate the trueness of the novel method, certified reference materials of lobster hepatopancreas (TORT-2), cormorant tissue (MODAS-4), and wastewater (ERM CA-713) were analyzed to determine traces of Cd, Hg, and Pb. Recoveries of certified values for these analytes were ranged from 91 to 111%, which indicated that the studied microplasma system in combination with ICP MS can be successfully used for very sensitive determinations of selected hazardous elements in environmental samples.

摘要

提出了一种新的微等离子体辅助蒸气发生技术,用于电感耦合等离子体质谱(ICP-MS)。结果发现,用微等离子体(溶液阳极辉光放电,SAGD)代替传统的气动雾化器,Ag、Bi、Cd、Hg、Pb、Tl 和 Zn 的分析信号分别提高了 8、4、13、13、9、10 和 7 倍。分析信号强度增强的主要因素是新型微等离子体系统产生的更高的分析物通量。SAGD-ICP-MS 的测量精度与 ICP-MS(气动雾化)相当,不超过 2%。SAGD-ICP-MS 中 Ag、Bi、Cd、Hg、Pb、Tl 和 Zn 的检测限分别为 5、2、6、5、4、10 和 20 ng L。如果能尽量减少观察到的记忆效应,该方法的分析性能可能会进一步提高。为了验证该新方法的准确性,分析了龙虾肝胰腺(TORT-2)、鸬鹚组织(MODAS-4)和废水(ERM CA-713)等标准参考物质,以测定痕量 Cd、Hg 和 Pb。这些分析物的认证值回收率在 91%至 111%之间,表明该研究中的微等离子体系统与 ICP-MS 相结合,可成功用于环境样品中选定有害元素的非常敏感测定。

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