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基于燃烧的样品引入系统的开发与初步评估,用于通过多接收电感耦合等离子体质谱法对固体样品中的汞进行直接同位素分析。

Development and initial evaluation of a combustion-based sample introduction system for direct isotopic analysis of mercury in solid samples via multi-collector ICP-mass spectrometry.

作者信息

Bolea-Fernandez Eduardo, Rua-Ibarz Ana, Anjos Jorge Alves, Vanhaecke Frank

机构信息

Ghent University, Department of Chemistry, Atomic & Mass Spectrometry - A&MS Research Group, Campus Sterre, Krijgslaan 281-S12, 9000, Ghent, Belgium.

Ghent University, Department of Chemistry, Atomic & Mass Spectrometry - A&MS Research Group, Campus Sterre, Krijgslaan 281-S12, 9000, Ghent, Belgium.

出版信息

Talanta. 2024 Aug 15;276:126210. doi: 10.1016/j.talanta.2024.126210. Epub 2024 May 4.

Abstract

High-precision isotopic analysis of mercury (Hg) using multi-collector ICP-mass spectrometry (MC-ICP-MS) is a powerful method for obtaining insight into the sources, pathways and sinks of this toxic metal. Modification of a commercially available mercury analyzer (Teledyne Leeman Labs, Hydra IIc - originally designed for quantification of Hg through sample combustion, collection of the Hg vapor on a gold amalgamator, subsequent controlled release of Hg and detection using cold vapor atomic absorption spectrometry CVAAS) enabled the system to be used for the direct high-precision Hg isotopic analysis of solid samples using MC-ICP-MS - i.e., without previous sample digestion and subsequent dilution. The changes made to the mercury analyzer did not compromise its (simultaneous) use for Hg quantification via CVAAS. The Hg vapor was mixed with a Tl-containing aerosol produced via pneumatic nebulization, creating wet plasma conditions, and enabling the use of Tl as an internal standard for correction of instrumental mass discrimination. Accurate and precise (0.10 ‰ 2SD, δHg, n = 5) results were obtained for an in-house standard solution of Hg (20 ng Hg sample intake). Initial validation relied on the successful analysis of two solid certified reference materials of biological origin (BCR CRM 464 Tuna fish and NRC-CNRC TORT-3 Lobster hepatopancreas). It was shown that instrumental mass discrimination can be adequately corrected for by relying on the use of an aqueous Hg standard solution (NIST SRM 3133), without the need of matrix-matching. The novel setup developed thus allows for direct high-precision isotopic analysis of Hg in solid samples, thus enhancing the sample throughput. It is also suited for samples for which low amounts are available only and/or that are characterized by low Hg concentrations.

摘要

使用多接收电感耦合等离子体质谱仪(MC-ICP-MS)对汞(Hg)进行高精度同位素分析,是深入了解这种有毒金属的来源、迁移途径和汇的有力方法。对市售汞分析仪(Teledyne Leeman Labs公司的Hydra IIc,最初设计用于通过样品燃烧、在金汞齐化器上收集汞蒸气、随后控制释放汞并使用冷蒸气原子吸收光谱法(CVAAS)进行检测来定量汞)进行改装,使该系统能够用于使用MC-ICP-MS对固体样品进行直接高精度汞同位素分析,即无需事先对样品进行消解和后续稀释。对汞分析仪所做的更改并未影响其通过CVAAS同时进行汞定量分析的功能。汞蒸气与通过气动雾化产生的含铊气溶胶混合,创造了湿等离子体条件,并能够使用铊作为内标来校正仪器质量歧视。对于汞的内部标准溶液(进样量为20 ng汞),获得了准确且精确(0.10‰ 2SD,δHg,n = 5)的结果。初始验证依赖于对两种生物来源的固体标准参考物质(BCR CRM 464金枪鱼和NRC-CNRC TORT-3龙虾肝胰腺)的成功分析。结果表明,依靠使用汞水溶液标准溶液(NIST SRM 3133),无需进行基体匹配,就可以充分校正仪器质量歧视。由此开发的新型装置允许对固体样品中的汞进行直接高精度同位素分析,从而提高了样品通量。它也适用于仅能获得少量样品和/或汞浓度较低的样品。

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