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Searching Nanoplastics: From Sampling to Sample Processing

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Publisher MDPI
Date 2021 Nov 13
PMID 34771215
Citations 8
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Abstract

Nanoplastics (NPs) are considered emerging pollutants, namely unregulated contaminants whose toxic effect on humans and the environment has been demonstrated or suspected. They are the result of the physical fragmentation of the plastics that over time reach smaller dimensions (<100 nm). The issues related to the characterization and quantification of NPs in the environmental matrices are mainly related to the infinitepsimal size, to the fact that they are found in bulk, and to the different physico-chemical forms in which the same polymer can evolve over time by degradation. To deal with the study of a new class of pollutants it is necessary to assess the entire analytical method, carefully considering every single step (sampling, cleanup, qualitative, and quantitative analysis) starting from the validation method in the laboratory. This paper reviews the analytical method steps, focusing on the first ones, which the current literature often underestimates: laboratory tests, sampling, and sample processing; in fact, most errors and the quality of the analyses often depend on them. In addition, all newly introduced sample processing methods were examined.

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References
1.
Liu M, Lu S, Song Y, Lei L, Hu J, Lv W . Microplastic and mesoplastic pollution in farmland soils in suburbs of Shanghai, China. Environ Pollut. 2018; 242(Pt A):855-862. DOI: 10.1016/j.envpol.2018.07.051. View

2.
Stark M . Letter to the Editor Regarding "Are We Speaking the Same Language? Recommendations for a Definition and Categorization Framework for Plastic Debris". Environ Sci Technol. 2019; 53(9):4677. DOI: 10.1021/acs.est.9b01360. View

3.
Mattsson K, Hansson L, Cedervall T . Nano-plastics in the aquatic environment. Environ Sci Process Impacts. 2015; 17(10):1712-21. DOI: 10.1039/c5em00227c. View

4.
Lin Y, Huang X, Liu Q, Lin Z, Jiang G . Thermal fragmentation enhanced identification and quantification of polystyrene micro/nanoplastics in complex media. Talanta. 2019; 208:120478. DOI: 10.1016/j.talanta.2019.120478. View

5.
Koelmans A, Hazimah Mohamed Nor N, Hermsen E, Kooi M, Mintenig S, De France J . Microplastics in freshwaters and drinking water: Critical review and assessment of data quality. Water Res. 2019; 155:410-422. PMC: 6449537. DOI: 10.1016/j.watres.2019.02.054. View