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Multiparameter characterisation of a nano-polypropylene representative test material with fractionation, light scattering, high-resolution microscopy, spectroscopy, and spectrometry methods

Abstract

Reference and quality control materials with comparable physicochemical properties to nanoplastic contaminants present in environmental and food nanoplastics are currently lacking. Here we report a nanoplastic polypropylene material prepared using a top-down approach involving mechanical fragmentation of larger plastics. The material was found to be homogeneous and stable in suspension and has been characterised for average particle size, size distribution range, particle number concentration, polypropylene mass fraction and inorganic impurity content using a wide range of analytical methods, including AF4, cFFF, PTA, (MA)DLS, MALS, SEM, AFM, TEM, STEM, EDS, Raman, ICP-MS and pyGC-MS. The material was found to have a broad size distribution, ranging from 50 nm to over 200 nm, with the average particle size value dependent on the technique used to determine it. Particle number concentration ranged from 1.7–2.4 × 1010 g−1, according to PTA. Spectroscopy techniques confirmed that the material was polypropylene, with evidence of aging due to an increased level of oxidation. The measured mass fraction was found to depend on the marker used and ranged between 3 and 5 μg g−1. Inorganic impurities such as Si, Al, Mg, K, Na, S, Fe, Cl and Ca were also identified at ng g−1 levels. Comparability and complementarity across the measurement methods and techniques is also discussed.
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Category

Academic article

Language

English

Author(s)

  • Dorota Bartczak
  • Aneta Sikora
  • Heidi Goenaga-Infante
  • Korinna Altmann
  • Roland Drexel
  • Florian Meier
  • Enrica Alasonati
  • Marc Lelong
  • Florence Cado
  • Carine Chivas-Joly
  • Marta Fadda
  • Alessio Sacco
  • Andrea Mario Rossi
  • Daniel Pröfrock
  • Dominik Wippermann
  • Francesco Barbero
  • Ivana Fenoglio
  • Andy Booth
  • Lisbet Sørensen
  • Amaia Igartua
  • Charlotte Wouters
  • Jan Mast
  • Marta Barbaresi
  • Francesca Rossi
  • Maurizio Piergiovanni
  • Monica Mattarozzi
  • Maria Careri
  • Thierry Caebergs
  • Anne Sophie Piette
  • Jérémie Parot
  • Andrea Mario Giovannozzi

Affiliation

  • SINTEF Industry / Biotechnology and Nanomedicine
  • SINTEF Ocean / Climate and Environment
  • Belgium
  • Sciensano
  • France
  • Italy
  • University of Parma
  • University of Turin
  • National Institute of Metrology Research
  • United Kingdom
  • Germany
  • Helmholtz-Zentrum Geesthacht
  • Federal Institute for Materials Research and Testing

Date

04.02.2026

Year

2026

Published in

Environmental Science: Nano

ISSN

2051-8153

Volume

13

Issue

3

Page(s)

1391 - 1405

View this publication at Norwegian Research Information Repository