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测量食品和消费品中的纳米颗粒粒径分布:综述。

Measuring nanoparticles size distribution in food and consumer products: a review.

机构信息

European Commission - DG Joint Research Centre, Institute for Health and Consumer Protection, Ispra (VA), Italy.

出版信息

Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2012 Aug;29(8):1183-93. doi: 10.1080/19440049.2012.689777. Epub 2012 Jun 22.

Abstract

Nanoparticles are already used in several consumer products including food, food packaging and cosmetics, and their detection and measurement in food represent a particularly difficult challenge. In order to fill the void in the official definition of what constitutes a nanomaterial, the European Commission published in October 2011 its recommendation on the definition of 'nanomaterial'. This will have an impact in many different areas of legislation, such as the European Cosmetic Products Regulation, where the current definitions of nanomaterial will come under discussion regarding how they should be adapted in light of this new definition. This new definition calls for the measurement of the number-based particle size distribution in the 1-100 nm size range of all the primary particles present in the sample independently of whether they are in a free, unbound state or as part of an aggregate/agglomerate. This definition does present great technical challenges for those who must develop valid and compatible measuring methods. This review will give an overview of the current state of the art, focusing particularly on the suitability of the most used techniques for the size measurement of nanoparticles when addressing this new definition of nanomaterials. The problems to be overcome in measuring nanoparticles in food and consumer products will be illustrated with some practical examples. Finally, a possible way forward (based on the combination of different measuring techniques) for solving this challenging analytical problem is illustrated.

摘要

纳米粒子已经应用于多种消费产品,包括食品、食品包装和化妆品,因此在食品中检测和测量纳米粒子是一项极具挑战性的工作。为了填补对构成纳米材料的官方定义的空白,欧盟委员会于 2011 年 10 月发布了关于“纳米材料”定义的建议。这将对许多不同领域的立法产生影响,例如欧洲化妆品法规,其中纳米材料的现行定义将根据这一定义进行讨论,以确定如何进行调整。该新定义要求对样品中所有初级粒子的基于数量的粒径分布进行测量,测量范围为 1-100nm,无论这些初级粒子是处于自由、未结合状态还是作为聚集/团聚体的一部分。对于那些必须开发有效且兼容的测量方法的人来说,这一定义确实带来了巨大的技术挑战。本文将概述当前的最新技术水平,特别关注最常用的技术在解决新材料纳米定义时对纳米粒子尺寸测量的适用性。将通过一些实际示例来说明在食品和消费品中测量纳米粒子时需要克服的问题。最后,展示了一种可能的解决方案(基于不同测量技术的组合),用于解决这一具有挑战性的分析问题。

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