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一种自制采样系统与兆瓦级正离子模式辉光放电质谱联用,以确认来自中国鄱阳湖的铜和锌的目标离子。

A home-made sampling system coupled to hectowatt-MPT mass spectrometry in positive ion mode to confirm target ions of copper and zinc from Poyang Lake, China.

机构信息

National and Provincial Union Engineering Research Center for the Veterinary Herbal Medicine Resources and Initiative, Hunan Agricultural University, Changsha, 410128, China.

Guangzhou Hexin Instrument Co, Ltd, Guangzhou, 510530, China.

出版信息

Anal Bioanal Chem. 2022 Aug;414(20):6115-6126. doi: 10.1007/s00216-022-04172-7. Epub 2022 Jun 22.

DOI:10.1007/s00216-022-04172-7
PMID:35732744
Abstract

A novel home-made HSO-Nafion (HN) tube sampling system coupled to a line ion trap mass spectrometer (LTQ-MS) with a versatile ambient ionization source, hectowatt microwave plasma torch (HMPT), has manifested unique advantages for picking directly metal elements in aqueous samples and acquiring the fully characteristic MPT mass spectra of copper and zinc composite ions. Here, we report the development of a novel HN-HMPT-LTQ-MS for metal elements assay based on environmental water to analyze samples of Poyang Lake, China. Detailed multi-stage tandem mass spectra show that the general structural form of target ions is [M(NO)(HO)(OH)] for the positive ion mode. Under the optimized conditions, the proposed method provided low limits of detection (LODs) of 0.23 μgL for Cu and 1.1 μgL for Zn, with relative standard deviations (RSDs) of less than 12.7% by MPT-LTQ-MS. This new result has met the requirements of national standards (GB 5750.6-2006) and is only about one magnitude order larger than the LOD of ICP-MS method. A wide linear response range of about 4 orders of magnitude for the method with linear coefficients (R) of 0.99709 - 0.99962 for copper and zinc tested was in accordance with that of ICP-MS. Except for the recovery of 79% for the third sample and 123.8% for the seventh sample, the present method also provided good recoveries (84 - 119.3%) in spiked 10 batches of drinking water samples. Furthermore, it is envisioned that the developed approach might build a powerful hectowatt-MPT-MS platform for food security detection, drug analysis, and origin traceability.

摘要

一种新型自制 HSO-Nafion(HN)管采样系统,与多功能环境离子源、毫瓦微波等离子炬(HMPT)耦合的线离子阱质谱仪(LTQ-MS),在直接从水样中提取金属元素以及获得铜锌复合离子的全特征 MPT 质谱方面具有独特的优势。在此,我们报告了一种新型 HN-HMPT-LTQ-MS 的开发,用于基于环境水的金属元素分析,以分析中国鄱阳湖的水样。详细的多级串联质谱表明,在正离子模式下,目标离子的一般结构形式为[M(NO)(HO)(OH)]。在优化条件下,该方法对 Cu 的检出限(LOD)为 0.23μgL,对 Zn 的检出限为 1.1μgL,相对标准偏差(RSD)小于 12.7%。这一新结果满足国家标准(GB 5750.6-2006)的要求,仅比 ICP-MS 方法的检出限大一个数量级左右。该方法的线性响应范围很宽,约为 4 个数量级,铜和锌的线性系数(R)为 0.99709-0.99962。除第三个样品的回收率为 79%和第七个样品的回收率为 123.8%外,该方法还对 10 批饮用水样品进行了加标,回收率良好(84%-119.3%)。此外,预计所开发的方法可能为食品安全检测、药物分析和来源追溯建立一个强大的毫瓦-MPT-MS 平台。

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