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Importance of Attachment Efficiency in Determining the Fate of PS and PVC Nanoplastic Heteroaggregation with Natural Colloids Using a Multimedia Model.

Publication ,  Journal Article
Abdolahpur Monikh, F; Quik, JTK; Wiesner, MR; Tapparo, A; Pastore, P; Grossart, H-P; Akkanen, J; Kortet, R; Kukkonen, JVK
Published in: Environmental science & technology
March 2025

Here, we assessed the heteroaggregation of polystyrene (PS) and poly(vinyl chloride) (PVC) nanoplastics with SiO2 as a model of natural colloids. Homoaggregation and heteroaggregation were evaluated as a function of CaCl2 (0-100 mM) and natural organic matter (NOM) (50 mg L-1) at a designated concentration of nanoplastics (200 μg L-1). Critical coagulation concentrations (CCC) of nanoplastics were determined in homoaggregation and heteroaggregation experiments with SiO2 and CaCl2. The attachment efficiency (α) was calculated by quantifying the number of nanoplastics in the presence of CaCl2, NOM, and SiO2 using single-particle inductively coupled plasma mass spectrometry (spICP-MS) and pseudo-first-order kinetics. The calculated α was fed into the SimpleBox4Plastics model to predict the fate of nanoplastics across air, water, soil, and sediment compartments. Nanoplastics exhibited high stability against homoaggregation, while significant heteroaggregation with SiO2 occurred at CaCl2 concentrations above 100 mM. The influence of NOM was also evaluated, showing a reduction in heteroaggregation with SiO2 for both nanoplastic types. Sensitivity analysis indicated that the degradation half-life of the tested nanoplastics had a more significant impact on persistence than did α. The results emphasize the environmental stability of nanoplastics, particularly in freshwater and soil compartments, and the critical role of NOM and emission pathways in determining their fate.

Duke Scholars

Published In

Environmental science & technology

DOI

EISSN

1520-5851

ISSN

0013-936X

Publication Date

March 2025

Volume

59

Issue

9

Start / End Page

4674 / 4683

Related Subject Headings

  • Silicon Dioxide
  • Polyvinyl Chloride
  • Polystyrenes
  • Nanoparticles
  • Models, Chemical
  • Environmental Sciences
  • Colloids
  • Calcium Chloride
 

Citation

APA
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ICMJE
MLA
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Abdolahpur Monikh, F., Quik, J. T. K., Wiesner, M. R., Tapparo, A., Pastore, P., Grossart, H.-P., … Kukkonen, J. V. K. (2025). Importance of Attachment Efficiency in Determining the Fate of PS and PVC Nanoplastic Heteroaggregation with Natural Colloids Using a Multimedia Model. Environmental Science & Technology, 59(9), 4674–4683. https://doi.org/10.1021/acs.est.4c10918
Abdolahpur Monikh, Fazel, Joris T. K. Quik, Mark R. Wiesner, Andrea Tapparo, Paolo Pastore, Hans-Peter Grossart, Jarkko Akkanen, Raine Kortet, and Jussi V. K. Kukkonen. “Importance of Attachment Efficiency in Determining the Fate of PS and PVC Nanoplastic Heteroaggregation with Natural Colloids Using a Multimedia Model.Environmental Science & Technology 59, no. 9 (March 2025): 4674–83. https://doi.org/10.1021/acs.est.4c10918.
Abdolahpur Monikh F, Quik JTK, Wiesner MR, Tapparo A, Pastore P, Grossart H-P, et al. Importance of Attachment Efficiency in Determining the Fate of PS and PVC Nanoplastic Heteroaggregation with Natural Colloids Using a Multimedia Model. Environmental science & technology. 2025 Mar;59(9):4674–83.
Abdolahpur Monikh, Fazel, et al. “Importance of Attachment Efficiency in Determining the Fate of PS and PVC Nanoplastic Heteroaggregation with Natural Colloids Using a Multimedia Model.Environmental Science & Technology, vol. 59, no. 9, Mar. 2025, pp. 4674–83. Epmc, doi:10.1021/acs.est.4c10918.
Abdolahpur Monikh F, Quik JTK, Wiesner MR, Tapparo A, Pastore P, Grossart H-P, Akkanen J, Kortet R, Kukkonen JVK. Importance of Attachment Efficiency in Determining the Fate of PS and PVC Nanoplastic Heteroaggregation with Natural Colloids Using a Multimedia Model. Environmental science & technology. 2025 Mar;59(9):4674–4683.
Journal cover image

Published In

Environmental science & technology

DOI

EISSN

1520-5851

ISSN

0013-936X

Publication Date

March 2025

Volume

59

Issue

9

Start / End Page

4674 / 4683

Related Subject Headings

  • Silicon Dioxide
  • Polyvinyl Chloride
  • Polystyrenes
  • Nanoparticles
  • Models, Chemical
  • Environmental Sciences
  • Colloids
  • Calcium Chloride