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发展一种 SEM 和 ICP-MS 联合方法,用于定性和定量分析食品中的金属纳米和微颗粒[已更正]。

Development of a combined SEM and ICP-MS approach for the qualitative and quantitative analyses of metal nano and microparticles in food products [corrected].

机构信息

Dipartimento di Chimica Generale ed Inorganica, Chimica Analitica, Chimica Fisica, Università degli Studi di Parma, Parma, Italy.

出版信息

Anal Bioanal Chem. 2011 Sep;401(4):1401-9. doi: 10.1007/s00216-011-5149-2. Epub 2011 Jun 11.

Abstract

An integrated approach based on the use of inductively coupled plasma mass spectrometry (ICP-MS) and scanning electron microscopy (SEM) for the qualitative and quantitative analyses of metal particles in foods was devised and validated. Different raw materials and food products, like wheat, durum wheat, wheat flour, semolina, cookies, and pasta were considered. Attention was paid to the development of sample treatment protocols for each type of sample to avoid potential artifacts such as aggregation or agglomeration. The analytical protocols developed followed by ICP-MS and SEM investigations allowed us the quantitative determination and the morphological and dimensional characterization of metal nano- and microparticles isolated from the raw materials and finished food products considered. The ICP-MS method was validated in terms of linearity (0.8-80 μg/g and 0.09-9 μg/g for Fe and Ti, respectively), quantification limits (0.73 μg/g for Fe and 0.09 μg/g for Ti), repeatability (relative standard deviation (RSD) % equal to 10% for Fe and 20% in a wheat matrix as an example), and extraction recoveries (93 ± 2-101 ± 2%). Validation of the scanning electron microscopy-energy dispersive X-ray spectroscopy (SEM-EDS) measurements was performed working in a dimensional range from 1 to 100 μm with an estimated error in the size determination equal to 0.5 μm. ICP-MS data as well as SEM measurements showed a decrease in the concentration of metal particles from wheat to flour and from durum wheat to semolina samples, thus indicating an external contamination of grains by metal particles. These findings were confirmed by environmental SEM analysis, which allowed investigation of particles of lower dimensions. Generally, the largest number of particles was found in the case of iron and titanium, whereas particles of copper and zinc were only occasionally found without any possibility of quantifying their number.

摘要

本研究设计并验证了一种基于电感耦合等离子体质谱(ICP-MS)和扫描电子显微镜(SEM)联用的方法,用于定性和定量分析食品中的金属颗粒。研究中考虑了不同的原材料和食品,如小麦、杜伦小麦、小麦粉、粗粒小麦粉、饼干和面条。本研究特别关注每种样品的样品处理方案的开发,以避免潜在的伪像,如聚集或团聚。通过 ICP-MS 和 SEM 研究开发的分析方案,使我们能够对从原材料和加工食品中分离出的金属纳米和微米颗粒进行定量测定和形态及尺寸表征。ICP-MS 方法在铁(0.8-80 μg/g 和 0.09-9 μg/g)和钛(0.73 μg/g 和 0.09 μg/g)的线性度、定量限(Fe 为 0.73 μg/g,Ti 为 0.09 μg/g)、重复性(以小麦为例,Fe 的相对标准偏差(RSD)为 10%,Ti 的 RSD 为 20%)和提取回收率(93±2-101±2%)方面进行了验证。SEM-EDS 测量的验证工作在 1 至 100 μm 的尺寸范围内进行,尺寸测定的估计误差为 0.5 μm。ICP-MS 数据和 SEM 测量结果表明,从小麦到面粉,从杜伦小麦到粗粒小麦粉,金属颗粒的浓度降低,这表明金属颗粒对谷物的外部污染。环境 SEM 分析证实了这一发现,环境 SEM 分析允许对较低尺寸的颗粒进行研究。一般来说,铁和钛的颗粒数量最多,而铜和锌的颗粒数量则较少,且无法对其数量进行定量分析。

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