Methods for the analysis of submicrometer-and nanoplastic particles in the environment

C Schwaferts, R Niessner, M Elsner…�- TrAC Trends in Analytical�…, 2019 - Elsevier
C Schwaferts, R Niessner, M Elsner, NP Ivleva
TrAC Trends in Analytical Chemistry, 2019Elsevier
Nanoplastic is an emerging topic of relevance in environmental science. The analytical
methods for microplastic have a particle size limit of a few micrometers so that new methods
have to be developed to cover the nanometer range. This contribution reviews the progress
in environmental nanoplastic analysis and critically evaluates which techniques from
nanomaterial analysis may potentially be adapted to close the methodological gap. A
roadmap is brought forward for the whole analytical process from sample treatment to�…
Abstract
Nanoplastic is an emerging topic of relevance in environmental science. The analytical methods for microplastic have a particle size limit of a few micrometers so that new methods have to be developed to cover the nanometer range. This contribution reviews the progress in environmental nanoplastic analysis and critically evaluates which techniques from nanomaterial analysis may potentially be adapted to close the methodological gap. A roadmap is brought forward for the whole analytical process from sample treatment to particle characterization. This includes a critical review of (i) methods for analyte extraction and preconcentration from various environmental matrices; (ii) methods for the separation of the nanoplastic into specific size fractions; (iii) light scattering techniques and various types of microscopy to characterize the particle fractions; (iv) chemical identification of particles to validate the obtained data. For these methods, we will discuss prospects and limitations to develop analytical protocols for specific sampling scenarios.
Elsevier