Micro- and nanoplastics generated by friction- and traction-induced wear and tear of rubber tyres, designated as tyre microplastics (TMPs) and tyre nanoplastics (TNPs), are a major source of air, terrestrial and aquatic contamination. These particles are dispersed from the point of generation to distant locations via wind action and stormwater and wastewater discharges, adding to the particulate matter load in ambient air, and resulting in river and marine flora and fauna contamination. The occurrence of TMPs and TNPs in the environment is widespread, persistent and unregulated. This paper critically assesses current scientific knowledge on TMPs and TNPs by conducting a systematic review of their occurrence, methods of identification and characterisation, and knowledge gaps related to their fate, transport and environmental impacts. Their fate primarily depends on the particles’ size, shape, density, composition and possible interactions with living organisms and plants, along with processes like fragmentation, aggregation, sorption and bioaccumulation. These particles also have the potential to leach heavy metals and aromatic hydrocarbons, causing detrimental impacts on aquatic/terrestrial organisms. The lack of standardised methodologies for identification, quantification and characterisation of TMPs/TNPs poses significant challenges in terms of wider environmental risk assessment, while their sources, emissions, transport and impacts remain highly uncertain.
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1 November 2025
Research Article|
July 03 2025
A review of rubber tyre derived micro- and nanoplastics: fate, impact and risks
Prithvendra Singh
;
Research Scholar, Department of Civil Engineering,
Indian Institute of Technology Bombay
, Mumbai, India
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Yashi Singh
;
Yashi Singh
Intern Doctor,
Mahatma Gandhi Mission’s Medical College and Hospital
, Navi Mumbai, India
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Evan K. Paleologos
;
Evan K. Paleologos
Department of Civil Engineering,
Abu Dhabi University
, Abu Dhabi, UAE
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Laura Banasiak
;
Laura Banasiak
Senior Scientist,
Institute of Environmental Science and Research (ESR)
, Wellington, New Zealand
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Brendan C. O’Kelly
;
Brendan C. O’Kelly
Associate Professor, Department of Civil, Structural and Environmental Engineering,
Trinity College Dublin
, Dublin, Ireland
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Mrunal Bokade
;
Mrunal Bokade
Research Scholar, Department of Civil Engineering,
Indian Institute of Technology Bombay
, Mumbai, India
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Abdel-Mohsen O. Mohamed
;
Abdel-Mohsen O. Mohamed
Professor, Civil and Environmental Engineering, and Chief Technology Advisor,
Uberbinder Limited
, Oxford, UK
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Andrew Hursthouse
;
Andrew Hursthouse
Professor, Environmental Geochemistry, School of Computing, Engineering & Physical Sciences,
University of the West of Scotland
, Paisley, Scotland, UK
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Theo Sarris
;
Theo Sarris
Senior Science Leader,
Institute of Environmental Science and Research (ESR)
, Christchurch, New Zealand
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Devendra Narain Singh
Devendra Narain Singh
Professor, Department of Civil Engineering,
Indian Institute of Technology Bombay
, Mumbai, India
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Declaration of competing interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.
Publisher: Emerald Publishing
Received:
October 24 2024
Accepted:
June 04 2025
Online ISSN: 2051-803X
Funding
Funding Group:
- Funding Statement(s): This research did not receive any specific grant from funding agencies in the public, commercial or not-for-profit sectors.
© 2025 Emerald Publishing Limited
2025
Emerald Publishing Limited
Licensed re-use rights only
Environmental Geotechnics (2025) 12 (10): 691–708.
Article history
Received:
October 24 2024
Accepted:
June 04 2025
Citation
Singh P, Singh Y, Paleologos EK, Banasiak L, O’Kelly BC, Bokade M, Mohamed AO, Hursthouse A, Sarris T, Singh DN (2025), "A review of rubber tyre derived micro- and nanoplastics: fate, impact and risks". Environmental Geotechnics, Vol. 12 No. 10 pp. 691–708, doi: https://doi.org/10.1680/jenge.24.00159
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