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University of Plymouth

Plastic pollution: Investigating environmental pathways and critically evaluating interventions

Abstract

dc:description.abstract

Plastics are lightweight, versatile, and durable materials used in the manufacture of <br/>a wide range of products. Innovation in the early 1950’s facilitated a dramatic <br/>reduction in production costs with the potential to mass produce inexpensive <br/>convenience items intended for single use applications. As a consequence, plastic <br/>production has grown exponentially over the last 75 years, and a throw away culture of single use has become deeply engrained in modern society. Plastic production exceeds 450 million tonne/yr, substantially exceeding our capacity to manage associated waste resulting in pollution accumulating in every compartment of the natural environment. While plastic pollution has received considerable attention from academic research, some knowledge gaps remain, particularly for more emerging contaminants and with regards to the relative importance of sources and their pathways in the environment. Such information is vital to guide interventions. Even more critically there is a substantial lack of evidence on the efficacy and potential unintended consequences of ‘solutions’ intended to address plastic pollution. <br/><br/>This thesis helps to fill some of those knowledge gaps by providing primary data on the relative importance and pathways of two major sources of microplastics, <br/>synthetic fibres and tyre wear particles (TWPs) (Chapters 2 and 3), and further <br/>explores the fate and distribution of TWPs in the natural environment (Chapter 4). Mid and downstream measures to prevent entry, or removal of plastic pollution in the natural environment are examined in Chapters 5 and 6 respectively. Chapter 7 contextualises these findings and examines how they can be used to guide policy measures. <br/><br/>Findings overwhelming evidence the importance of intervention at the design stage e.g. for textiles and tyres by modifying fibre structure, tread formulation, and wear resistance to reduce shedding during use. While interventions such wastewater treatment upgrades, installation of road drainage treatment systems, and clean-up devices can have some positive impact, they are less effective than prevention at source, thereby interventions become increasingly less effective as you move downstream. <br/><br/>By improving product design standards, reducing toxic components, and implementing internationally consistent labelling and regulation, substantial <br/>reductions in plastic emissions to the natural environment could be achieved. The thesis concludes that prevention-focused strategies, combined with robust <br/>regulations and coordinated global action are essential to tackling the plastic <br/>pollution and safeguarding the natural environment.

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Parker-Jurd, Florence
Contributors dc:contributor
  • Richard Thompson, Daniel Conley

Subjects

dc:subject × 4

Rights

Language dc:language
eng

Identifiers

dc:identifier.*
Repository record dc:identifier
https://pearl.plymouth.ac.uk/bms-theses/483
OAI identifier oai:identifier
oai:pearl.plymouth.ac.uk:bms-theses-1482

Chain of custody

source
Harvested from
University of Plymouth
Base URL
pearl.plymouth.ac.uk/do/oai
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Parker-Jurd, Florence. Plastic pollution: Investigating environmental pathways and critically evaluating interventions. 2026. https://pearl.plymouth.ac.uk/bms-theses/483