微塑料
样品(材料)
基质(化学分析)
环境科学
样品制备
环境化学
材料科学
化学
色谱法
复合材料
作者
Mike Wenzel,Gerrit Renner,Laura Pruin,Carmen Wolf,Christine Kube,Jürgen Schram,Torsten C. Schmidt,Jochen Tuerk
标识
DOI:10.1016/j.trac.2024.117997
摘要
The establishment of regulatory thresholds for microplastic concentrations is increasingly recognized as imperative. Therefore, an accurate identification and quantification process is required to ensure the reliability of the measured values when thermonalytical methods were applied. However, the urge for accuracy is hampered by observable matrix effects. Thus, our review aims to assess a spectrum of matrix effect mitigation strategies and finally to propose an analytical workflow that combines the advantages of diverse mitigation approaches. By addressing this topic, our article seeks to contribute to advance the comparability for microplastics analysis and facilitate the establishment of robust regulatory measures. With the analytical workflow proposed in our study, a wide range of matrix effects can be avoided. This can potentially lead to a more accurate analysis. The more accurate analysis allows the determination of realistic environmental concentrations which could lead to more accurate toxicity tests and the establishment of suitable regulatory thresholds. • Matrix effects can hamper the establishment of regulatory thresholds. • Key parameters leading to matrix effects are summarized and characterized. • A workflow that could improve the accuracy of thermoanalytical analysis is proposed.
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