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First steps towards a generic sample preparation scheme for inorganic engineered nanoparticles in a complex matrix for detection, characterization, and quantification by asymmetric flow-field flow fractionation coupled to multi-angle light scattering and ICP-MS

机译:面向复杂基质中无机工程纳米颗粒的通用样品制备方案的第一步,该过程通过与多角度光散射和ICP-MS耦合的非对称流场流动分馏进行检测,表征和定量

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摘要

The applicability of a multi-step generic procedure to systematically develop sample preparation methods for the detection, characterization, and quantification of inorganic engineered nanoparticles (ENPs) in a complex matrix was successfully demonstrated. The research focused on the optimization of the sample preparation, aiming to achieve a complete separation of ENPs from a complex matrix without altering the ENP size distribution and with minimal loss of ENPs. The separated ENPs were detected and further characterized in terms of particle size distribution and quantified in terms of elemental mass content by asymmetric flow-field flow fractionation coupled to a multi-angle light scattering detector and an inductively coupled plasma mass spectrometer. Following the proposed generic procedure SiO2-ENPs were separated from a tomato soup. Two potential sample preparation methods were tested these being acid digestion and colloidal extraction. With the developed method a complete SiO2-ENPs and matrix separation with a Si mass recovery >90% was achieved by acid digestion. The alteration of the particle size distribution was minimized by particle stabilization. The generic procedure which also provides quality criteria for method development is urgently needed for standardized and systematic development of procedures for separation of ENPs from a complex matrix. The chosen analytical technique was shown to be suitable for detecting SiO2-ENPs in a complex food matrix like tomato soup and may therefore be extended to monitor the existence of ENPs during production and safety control of foodstuffs, food labelling, and compliance with legislative limits. (Résumé d'auteur)
机译:成功证明了多步骤通用程序可系统地开发用于检测,表征和定量复杂基质中无机工程纳米颗粒(ENP)的样品制备方法的适用性。该研究集中在样品制备的优化上,旨在在不改变ENP尺寸分布且ENP损失最小的情况下,从复杂基质中完全分离出ENP。通过耦合到多角度光散射检测器和感应耦合等离子体质谱仪的不对称流场流动分馏,检测分离出的ENP,并进一步根据粒度分布进行表征,并根据元素质量含量进行定量。按照提出的通用程序,将SiO2-ENPs从番茄汤中分离出来。测试了两种潜在的样品制备方法,即酸消解和胶体萃取。通过开发的方法,通过酸消解可以实现SiO2-ENPs的完全分离和Si的质量回收率> 90%的基质分离。粒度分布的改变通过颗粒稳定化被最小化。对于从复杂基质中分离ENP的程序的标准化和系统化开发,迫切需要为方法开发提供质量标准的通用程序。结果表明,所选的分析技术适用于检测复杂食品基质(如番茄汤)中的SiO2-ENP,因此可以扩展到监测食品生产和安全控制,食品标签以及法规遵从性过程中ENP的存在。 (Résuméd'auteur)

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