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食品中二氧化钛纳米颗粒的表征:定义纳米颗粒的分析方法

Characterization of titanium dioxide nanoparticles in food products: analytical methods to define nanoparticles.

作者信息

Peters Ruud J B, van Bemmel Greet, Herrera-Rivera Zahira, Helsper Hans P F G, Marvin Hans J P, Weigel Stefan, Tromp Peter C, Oomen Agnes G, Rietveld Anton G, Bouwmeester Hans

机构信息

RIKILT Wageningen UR, Akkermaalsbos 2, 6708 WB Wageningen, The Netherlands.

出版信息

J Agric Food Chem. 2014 Jul 9;62(27):6285-93. doi: 10.1021/jf5011885. Epub 2014 Jun 30.

Abstract

Titanium dioxide (TiO2) is a common food additive used to enhance the white color, brightness, and sometimes flavor of a variety of food products. In this study 7 food grade TiO2 materials (E171), 24 food products, and 3 personal care products were investigated for their TiO2 content and the number-based size distribution of TiO2 particles present in these products. Three principally different methods have been used to determine the number-based size distribution of TiO2 particles: electron microscopy, asymmetric flow field-flow fractionation combined with inductively coupled mass spectrometry, and single-particle inductively coupled mass spectrometry. The results show that all E171 materials have similar size distributions with primary particle sizes in the range of 60-300 nm. Depending on the analytical method used, 10-15% of the particles in these materials had sizes below 100 nm. In 24 of the 27 foods and personal care products detectable amounts of titanium were found ranging from 0.02 to 9.0 mg TiO2/g product. The number-based size distributions for TiO2 particles in the food and personal care products showed that 5-10% of the particles in these products had sizes below 100 nm, comparable to that found in the E171 materials. Comparable size distributions were found using the three principally different analytical methods. Although the applied methods are considered state of the art, they showed practical size limits for TiO2 particles in the range of 20-50 nm, which may introduce a significant bias in the size distribution because particles <20 nm are excluded. This shows the inability of current state of the art methods to support the European Union recommendation for the definition of nanomaterials.

摘要

二氧化钛(TiO₂)是一种常见的食品添加剂,用于增强各种食品的白色、亮度,有时还用于改善风味。在本研究中,对7种食品级二氧化钛材料(E171)、24种食品和3种个人护理产品的二氧化钛含量以及这些产品中二氧化钛颗粒的数量基准尺寸分布进行了调查。已使用三种主要不同的方法来确定二氧化钛颗粒的数量基准尺寸分布:电子显微镜、不对称流场-流分级结合电感耦合质谱法以及单颗粒电感耦合质谱法。结果表明,所有E171材料具有相似的尺寸分布,初级粒径范围为60-300 nm。根据所使用的分析方法,这些材料中10-15%的颗粒尺寸低于100 nm。在27种食品和个人护理产品中的24种中,检测到钛的含量在0.02至9.0 mg TiO₂/g产品之间。食品和个人护理产品中二氧化钛颗粒的数量基准尺寸分布表明,这些产品中5-10%的颗粒尺寸低于100 nm,与E171材料中的情况相当。使用三种主要不同的分析方法发现了类似的尺寸分布。尽管所应用的方法被认为是现有技术水平,但它们显示出二氧化钛颗粒的实际尺寸限制在20-50 nm范围内,这可能会在尺寸分布中引入显著偏差,因为小于20 nm的颗粒被排除在外。这表明现有技术水平的方法无法支持欧盟对纳米材料定义的建议。

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