Ivleva Natalia P
Institute of Hydrochemistry, Chair of Analytical Chemistry and Water Chemistry, Technical University of Munich, Elisabeth-Winterhalter-Weg 6, 81377 Munich, Germany.
Chem Rev. 2021 Oct 13;121(19):11886-11936. doi: 10.1021/acs.chemrev.1c00178. Epub 2021 Aug 26.
Microplastics and nanoplastics have become emerging particulate anthropogenic pollutants and rapidly turned into a field of growing scientific and public interest. These tiny plastic particles are found in the environment all around the globe as well as in drinking water and food, raising concerns about their impacts on the environment and human health. To adequately address these issues, reliable information on the ambient concentrations of microplastics and nanoplastics is needed. However, micro- and nanoplastic particles are extremely complex and diverse in terms of their size, shape, density, polymer type, surface properties, etc. While the particle concentrations in different media can vary by up to 10 orders of magnitude, analysis of such complex samples may resemble searching for a needle in a haystack. This highlights the critical importance of appropriate methods for the chemical identification, quantification, and characterization of microplastics and nanoplastics. The present article reviews advanced methods for the representative mass-based and particle-based analysis of microplastics, with a focus on the sensitivity and lower-size limit for detection. The advantages and limitations of the methods, and their complementarity for the comprehensive characterization of microplastics are discussed. A special attention is paid to the approaches for reliable analysis of nanoplastics. Finally, an outlook for establishing harmonized and standardized methods to analyze these challenging contaminants is presented, and perspectives within and beyond this research field are discussed.
微塑料和纳米塑料已成为新出现的人为颗粒物污染物,并迅速成为一个科学和公众关注度不断上升的领域。这些微小的塑料颗粒在全球各地的环境中以及饮用水和食物中都有发现,这引发了人们对其对环境和人类健康影响的担忧。为了充分解决这些问题,需要有关微塑料和纳米塑料环境浓度的可靠信息。然而,微塑料和纳米塑料颗粒在尺寸、形状、密度、聚合物类型、表面性质等方面极其复杂多样。虽然不同介质中的颗粒浓度可能相差多达10个数量级,但分析如此复杂的样品可能就像大海捞针。这凸显了采用适当方法对微塑料和纳米塑料进行化学鉴定、定量和表征的至关重要性。本文综述了用于微塑料代表性的基于质量和基于颗粒分析的先进方法,重点关注检测的灵敏度和尺寸下限。讨论了这些方法的优点和局限性,以及它们在微塑料综合表征方面的互补性。特别关注了纳米塑料可靠分析的方法。最后,展望了建立统一和标准化方法来分析这些具有挑战性的污染物的前景,并讨论了该研究领域内外的相关观点。