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首页> 外文期刊>Food analytical methods >Reference Measurements for Priority and Essential Trace Elements and Methyl Mercury with Isotope Dilution Inductively Coupled Plasma-Mass Spectrometry for Seafood Safety Assessment and CRM Production
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Reference Measurements for Priority and Essential Trace Elements and Methyl Mercury with Isotope Dilution Inductively Coupled Plasma-Mass Spectrometry for Seafood Safety Assessment and CRM Production

机译:优先级和基本微量元素和甲基汞的参考测量,具有同位素稀释的电感耦合等离子体质谱,用于海鲜安全评估和CRM生产

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摘要

The continuous release of anthropogenic pollutants into marine environment increases the needs for the development of analytical procedures for their accurate determination in many sample types. Sound strategies for seafood safety monitoring call for measurement systems capable of producing comparable analytical results with demonstrated quality. Method validation, traceability, and uncertainty of analytical results are the three milestones to assess data quality. Some trace elements are essential for biological structures, but they can become toxic at concentrations beyond those necessary for their functions; others are toxic even at very low levels. Their accurate determination in reference samples serves as an important step in seafood safety control and pollution monitoring. Isotope dilution inductively coupled plasma-mass spectrometry (ID ICP-MS) has been applied for the determination of the total mass fractions of five trace elements (Cd, Cu, Hg, Pb, and Zn) and methyl mercury (MeHg) in marine biota candidate reference material IAEA-476. Because of the complex matrix of the sample and the expected spectral interferences, special care was taken for the validation of the applied methodology, particularly for its measurement step. Reference isotopic measurements were carried out by sector field inductively coupled plasma-mass spectrometer (ICP-SFMS). The entire ID ICP-SFMS measurement procedure was described by mathematical modeling and the combined uncertainty of measurement results was estimated. All factors influencing the final results and isotopic equilibrium were systematically investigated. This included the procedural blank, the moisture content in biota samples, and all factors affecting the blend ratio measurements (i.e., instrumental background, spectral interferences, dead time, mass discrimination effects, and the repeatability of measured isotope ratios). Modeling of the entire measurement procedure and the use of appropriate certified reference materials (CRM) enable to assure the traceability of obtained values to the International System of Units (SI). Finally, the developed procedure has been successfully applied in the process of the certification of the International Atomic Energy Agency (IAEA) certified reference material for trace elements and MeHg mass fractions in fish homogenate sample. The excellent agreement between obtained results in the present study and those derived from the IAEA certification campaign for trace elements and MeHg in the same sample matrix further validated the reference methods developed in the IAEA.
机译:人为污染物进入海洋环境的连续释放增加了在许多样品类型中准确测定的分析程序的开发需求。海鲜安全监测的声音策略调用测量系统,能够产生具有展示质量的可比分析结果。方法验证,分析结果的可追溯性和不确定性是评估数据质量的三个里程碑。一些微量元素对生物结构至关重要,但它们可以以超出其功能所必需的浓度变得毒性;即使在极低的水平下也是有毒的。它们在参考样品中的准确测定是海鲜安全控制和污染监测的重要步骤。同位素稀释电感偶联等离子体质谱(ID ICP-MS)已被应用于测定海洋生物群中的五种微量元素(Cd,Cu,Hg,Pb和Zn)和甲基汞(Mehg)的总质量分数候选参考资料IAEA-476。由于样品的复杂矩阵和预期的光谱干扰,因此采取了专门的应用方法,特别是其测量步骤。通过扇区电感耦合等离子体 - 质谱仪(ICP-SFMS)进行参考同位素测量。通过数学建模描述了整个ID ICP-SFMS测量程序,估计测量结果的组合不确定性。影响最终结果和同位素平衡的所有因素得到了系统地研究。这包括过程坯料,生物区域样本中的水分含量,以及影响混合比测量的所有因素(即仪器背景,光谱干扰,死区时间,质量辨别效果以及测量同位素比率的可重复性)。建模整个测量程序和使用适当的认证参考资料(CRM),以确保获得的价值的可追溯性(SI)。最后,已成功地应用于国际原子能机构(原子能机构)认证参考材料的方法的过程中成功应用于鱼均质样品中的微量元素和Mehg质量分数。在同一样品基质中获得本研究中获得的结果与来自IAEA认证活动的结果的优秀协议进一步验证了IAEA中开发的参考方法。

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