• LOGIN
    Login with username and password
Repository logo

BORIS Portal

Bern Open Repository and Information System

  • Publications
  • Theses
  • Research Data
  • Projects
  • Organizations
  • Researchers
  • More
  • Collections
  • Statistics
  • LOGIN
    Login with username and password
Repository logo
Unibern.ch
  1. Home
  2. Publications
  3. After the sun: a nanoscale comparison of the surface chemical composition of UV and soil weathered plastics.

After the sun: a nanoscale comparison of the surface chemical composition of UV and soil weathered plastics.

Details
Files
DOI
10.48350/185256
Publisher DOI
10.1186/s43591-023-00066-2
PubMed ID
37547699
Abstract
UNLABELLED

Once emitted into the environment, macro- (MaP), micro- (MP) and nanoplastics (NP) are exposed to environmental weathering. Yet, the effects of biogeochemical weathering factors occurring in the soil environment are unknown. As the transport, fate, and toxicity of MP and NP depend directly on their surface properties, it is crucial to characterize their transformation in soils to better predict their impact and interactions in this environment. Here, we used scanning transmission x-ray micro spectroscopy to characterize depth profiles of the surface alteration of environmental plastic debris retrieved from soil samples. Controlled weathering experiments in soil and with UV radiation were also performed to investigate the individual effect of these weathering factors on polymer surface alteration. The results revealed a weathered surface on a depth varying between 1 µm and 100 nm in PS, PET and PP environmental plastic fragments naturally weathered in soil. Moreover, the initial step of surface fragmentation was observed on a PS fragment, providing an insight on the factors and processes leading to the release of MP and NP in soils. The comparison of environmental, soil incubated (for 1 year) and UV weathered samples showed that the treatments led to different surface chemical modifications. While the environmental samples showed evidence of alteration involving oxidation processes, the UV weathered samples did not reveal oxidation signs at the surface but only decrease in peak intensities (indicating decrease of the number of chemical C bonds). After a one-year incubation of samples in soil no clear aging effects were observed, indicating that the aging of polymers can be slow in soils.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1186/s43591-023-00066-2.
Date Issued
2023
Publication Type
Article
Subject(s)
900 History > 910 Geography & travel
Subjects
Fragmentation Microplastic NEXAFS Photo-oxidation Plastic aging Polymer STXM Weathering
Language(s)
en
Author(s)
Foetisch, Alexandra  
Institute of Geography  
Filella, Montserrat
Watts, Benjamin
Bragoni, Maeva Lucie Océane  
Institute of Geography  
Bigalke, Moritz  
Institute of Geography  
Additional Credits
Institute of Geography  
Journal
Microplastics and Nanoplastics
Publisher
Springer
ISSN
2662-4966
Access(Rights)
open.access
Show full item
BORIS Portal
Bern Open Repository and Information System
Build: 0eaa7c [ 7.08. 11:06]
Explore
  • Projects
  • Funding
  • Publications
  • Research Data
  • Organizations
  • Researchers
  • Audiovisual Material
  • Software & other digital items
  • Events
More
  • About BORIS Portal
  • BORIS Portal & Open Science
  • Send Feedback
  • Cookie settings
  • Service Policy
Follow us on
  • Mastodon
  • YouTube
  • LinkedIn
UniBe logo
Repository logo COAR Notify