---
title: "European Parliament study on health effects of fine particles in Brussels, EU; no safe PM2.5 threshold identified"
sdDatePublished: "2026-08-25T15:10:00Z"
source: "https://www.europarl.europa.eu/RegData/etudes/STUD/2026/786419/ECTI_STU(2026)786419_EN.pdf"
topics:
  - name: "environmental pollution"
    identifier: "medtop:20000424"
  - name: "public health"
    identifier: "medtop:20001358"
locations:
  - "Zagreb"
  - "Silesia"
  - "Venice"
  - "Agía Paraskeví"
  - "Bucharest"
  - "Luxembourg"
  - "United Kingdom"
  - "Belgium"
  - "Bulgaria"
  - "Italy"
  - "Poland"
  - "Malta"
  - "Slovenia"
  - "Finland"
  - "Denmark"
  - "Spain"
  - "China"
  - "Germany"
  - "Norway"
  - "Portugal"
  - "Austria"
  - "Greece"
  - "France"
  - "Slovakia"
---


European Parliament study on health effects of fine particles in Brussels, EU; no safe PM2.5 threshold identified

Health effects of fine particles - Assessing the health burden of fine particles and options for stronger EU action

a

Health effects
of fine particles
Assessing the health burden of fine
particles and options for stronger EU
action
Policy Department for Transformation, Innovation and Health
Directorate-General for Economy, Transformation and Industry
Authors: Mike BEKE, Arnau DEDEU DUNTON, Nicky VULHOP,
Fleur WIJER, Marija JEVTIC, Vlatka MATKOVIC
PE 786.419 - August 2026
EN
STUDY
Requested by the ENVI and SANT Committees

Abstract
This study examines the health effects of fine particulate matter
(PM2.5 and PM10), trends in exposure, and the effectiveness of EU
legal and policy frameworks. It draws on an umbrella review of
198 systematic reviews, quantitative analysis of exposure trends,
stakeholder interviews, and comparative case studies across EU
Member States. The study shows consistent health effects of
PM2.5 exposure across multiple disease categories and identifies
persistent inequalities in exposure across populations and
regions, with no safe threshold for PM2.5 exposure identified. It
proposes evidence-based policy recommendations to reduce
health impacts across the EU.
The study was provided by the Policy Department for
Transformation, Innovation and Health at the request of the
Committee on Environment, Climate and Food Safety (ENVI) and
the Committee on Public Health (SANT).

Health effects
of fine particles
Assessing the health burden of fine
particles and options for stronger EU
action

This document was requested by the European Parliament's Committee on Environment, Climate and
Food Safety (ENVI) and the Committee on Public Health (SANT).

AUTHORS
Dr. Mike Beke, Principal Researcher, Ecorys
Arnau Luke Dedeu Dunton, Senior Researcher, Ecorys
Nicky Vulhop, Researcher, Ecorys
Fleur Wijer, Junior Researcher, Ecorys
Dr. Marija Jevtic, Expert Researcher, University of Novi Sad, Faculty of Medicine
Dr. Vlatka Matkovic, Expert Researcher, Health and Environmental Alliance (HEAL)
ACKNOWLEDGEMENTS
The authors would like to thank Rana Orhan Pees for the preparation of this study.
CONTRACTOR
Contractor: Ecorys
CONTACTS IN THE EUROPEAN PARLIAMENT
Coordination: Kristi POLLUVEER, Ioana-Alice POSTU
Editorial assistance: Marleen LEMMENS
To give feedback or obtain copies, please write to: ecti-poldep-b@europarl.europa.eu
PEER REVIEW
This study was subject to an external peer review.
VERSION
Original:
English
Manuscript completed in August 2026
BIBLIOGRAPHIC REFERENCE FOR THIS PAPER
BEKE, M. et al. 2026. Health effects of fine particles - Assessing the health burden of fine particles
and options for stronger EU action. Brussels: European Parliament, Policy Department for
Transformation, Innovation and Health
DISCLAIMER
The opinions expressed in this publication are those of the authors only and should not be considered
as representative of the European Parliament's official position.
ARTIFICIAL INTELLIGENCE
Microsoft Copilot 2026.6.2 was used to improve the readability of the text and broaden the range of
sources available to the authors. AI-generated content in this text has been reviewed by the authors.
COPYRIGHT
© European Union, 2026
Image on cover: MaciejBledowski / stock.adobe.com
LICENCE
The reuse of this document is authorised under a Creative Commons Attribution 4.0 International
(CC-BY 4.0) licence (https://creativecommons.org/licenses/by/4.0/).
To use or reproduce elements that are not owned by the European Union, permission may need to be
sought directly from the respective rightholders.
IDENTIFIERS
PE 786.419
ECTI/B/ENVI/IC/2025-026
Print
ISBN 978-92-848-3755-7 | doi: 10.2861/9609234 | QA-01-26-181-EN-C
PDF
ISBN 978-92-848-3754-0 | doi: 10.2861/9577658 | QA-01-26-181-EN-N

Health effects of fine particles

3
PE 786.419
CONTENTS
LIST OF ABBREVIATIONS
5
LIST OF FIGURES
7
LIST OF TABLES
7
EXECUTIVE SUMMARY
8

INTRODUCTION
12
1.1.
Background of the study
12
1.2. Scope and objectives of the study
12
1.3. Analytical scope and limitations
13

PM2.5/PM10 AND HUMAN HEALTH
14
2.1. Health effects on mortality and chronic diseases
16
2.1.1. All-cause mortality
16
2.1.2. Respiratory health
19
2.1.3. Cardiovascular health
23
2.1.4. Neurological and mental health
27
2.1.5. Cancer
31
2.1.6. Metabolic, endocrine, and other chronic diseases
34
2.1.7. Other outcomes
37
2.1.8. Reproductive health
39
2.1.9. Pregnancy outcomes
41
2.1.10. Foetal outcomes
44
2.1.11. Child health and development
50
2.2. Impacts on vulnerable and high-risk populations
52
2.2.1. Health effects across the life course
52
2.2.2. People with pre-existing health conditions
56
2.2.3. Socially or economically disadvantaged groups
59

TRENDS ACROSS THE EU
60
3.1. Trends in PM2.5 and PM10 concentrations across Member States
61
3.1.1. Long-term trends across Member States (2013–2023)
61
3.1.2. Sources of PM2.5 and PM10
64
3.2. Disparities in health burden
66
3.2.1. Long-term trends in attributable deaths
67
3.2.2. Recent trends in burden of disease (2021–2023)
69
3.2.3. PM10 health impacts
71

ECTI | Policy Department for Transformation, Innovation and Health

PE 786.419
4
3.3. Age-based and socioeconomic disparities
72
3.3.1. Age-specific health impacts across Member States
72
3.3.2. Socioeconomic inequalities across Member States
73

EU LEGAL AND POLICY FRAMEWORKS
76
4.1. Current EU legislation
76
4.1.1. Key instruments (direct effects)
77
4.1.2. Other instruments with indirect co-benefits
97
4.2. The ambition and effectiveness of the AAQD
105
4.2.1. Assessment of the ambition of the acquis
105
4.2.2. Assessment of the effectiveness of the acquis
113

CASE STUDIES
120
5.1. EU Member States
121
5.2. Summary table on alignment
130
5.3. Non-EU countries
131
5.3.1. United Kingdom
131
5.3.2. Norway
132
5.3.3. China
134

POLICY RECOMMENDATIONS
136
6.1.1. Strengthening the ambition and coherence of EU air quality standards
139
6.1.2. Closing the agricultural ammonia gap through cross-instrument policy coherence 140
6.1.3. Strengthening implementation and enforcement at Member State level
141
6.1.4. Closing sectoral policy gaps and addressing policy coherence failures
143
6.1.5. Improving health integration, evidence, and public communication
144

CONCLUSIONS
146
ANNEX 1. METHODOLOGY
149
Research design
149
Data sources
149
Stakeholder consultation
150
Case study selection and design
150
ANNEX 2. LIST OF INTERVIEWED STAKEHOLDERS AND GUIDE
150
Questionnaire EU institutions and agencies
151
Questionnaire EU-level experts, academics
152
Questionnaire National competent authorities
153
ANNEX 3. BURDEN OF DISEASE BETWEEN 2021 AND 2023
154
ANNEX 4. BIBLIOGRAPHY
160

Health effects of fine particles

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PE 786.419
LIST OF ABBREVIATIONS
AAQD
Ambient Air Quality Directive
ADHD
Attention Deficit/Hyperactivity Disorder
AFC
Antral Follicle Count
AMD
Age-related Macular Degeneration
AMH
Anti-Müllerian Hormone
ASD
Autism Spectrum Disorder
BAT
Best Available Techniques
CKD
Chronic Kidney Disease
COPD
Chronic Obstructive Pulmonary Disease
DALY
Disability-Adjusted Life Year
DED
Dry Eye Disease
EEA
European Environment Agency
EPBD
Energy Performance of Buildings Directive
FEV₁
Forced Expiratory Volume in one second
FVC
Forced Vital Capacity
FQD
Fuel Quality Directive
GBD
Global Burden of Disease
IHD
Ischaemic Heart Disease
IVF
In Vitro Fertilisation
LBW
Low Birth Weight
LGA
Large for Gestational Age
MI
Myocardial Infarction

ECTI | Policy Department for Transformation, Innovation and Health

PE 786.419
6
NAFLD
Non-Alcoholic Fatty Liver Disease
PEF
Peak Expiratory Flow
PM
Particulate Matter
PPD
Postpartum Depression
PTB
Pulmonary Tuberculosis
SARS
Severe Acute Respiratory Syndrome
SIDS
Sudden Infant Death Syndrome
SLD
Steatotic Liver Disease
SLE
Systemic Lupus Erythematosus
TB
Tuberculosis
TLBW
Term Low Birth Weight
TRAP
Traffic-Related Air Pollution
WHO
World Health Organization

Health effects of fine particles

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PE 786.419
LIST OF FIGURES
Figure 1: All-cause mortality
16
Figure 2: Respiratory health
19
Figure 3: Cardiovascular health
23
Figure 4: Neurological and mental health
27
Figure 5: Cancer
31
Figure 6: Metabolic, endocrine, and other chronic diseases
34
Figure 7: Other outcomes
37
Figure 8: Reproductive health
39
Figure 9: Pregnancy outcomes
41
Figure 10: Child health and development
50
Figure 11: Health effects across the life course
52
Figure 12: People with pre-existing health conditions
56
Figure 13: Annual average concentrations of PM2.5 and PM10 in EU Member States,
62
Figure 14: Annual average concentrations of PM2.5 in EU Member States at NUTS 2 level
64
Figure 15: Deaths per 100k of affected population attributed to PM2.5
68
Figure 16: Health burden attributed to PM2.5 in DALYs at NUTS2 level, 2023
70
Figure 17: Population-weighted concentration of PM2.5 in the richest and poorest quintile
74
Figure 18: Ratio of PM2.5 population weighted concentrations: poorest /richest quintile
75

LIST OF TABLES
Table 1: Study structure
13
Table 2: PM limit values
105
Table 3: Summary of the gap between EU policy and WHO health evidence on PM2.5
105
Table 4: Summary of ambition and effectiveness
119
Table 5: Country summary – PM2.5/PM10 case studies
130
Table 6: Summary of recommendations
137
Table 7: Overview of case study countries
150
Table 8: List of interviewed stakeholders
151
Table 9: Disability Adjusted Life Years per 100k affected people 2021
154
Table 10: Disability Adjusted Life Years per 100k affected people 2022
155
Table 11: Disability Adjusted Life Years per 100k affected people 2023
158

ECTI | Policy Department for Transformation, Innovation and Health

PE 786.419
8
EXECUTIVE SUMMARY
This study examines the health effects of fine particulate matter (PM2.5 and PM10), trends in exposure,
and the effectiveness of EU legal and policy frameworks. It draws on an umbrella review of 198
systematic reviews, quantitative analysis of exposure trends, stakeholder interviews, and comparative
case studies across EU Member States. The study finds no safe threshold for PM2.5 exposure, shows
consistent health effects across multiple disease categories, and documents persistent inequalities in
exposure across populations and regions. It proposes evidence-based policy recommendations to
reduce health impacts across the EU.
The study was prepared by Ecorys for the Policy Department for Transformation, Innovation and
Health at the request of the Committee on Environment, Climate and Food Safety (ENVI) and the
Committee on Public Health (SANT).
Background
Fine particulate matter, microscopic airborne particles known as PM2.5 (particles smaller than
2.5 micrometres in diameter) and PM10 (particles smaller than 10 micrometres), is one of the most
serious environmental threats to public health in the European Union (EU). These particles are small
enough to pass deep into the lungs and enter the bloodstream, but they may also affect the body
through other pathways, including direct transport via the olfactory system to the brain, where they
trigger inflammation, damage blood vessels and organs, and disrupt the body's immune and nervous
systems. These effects are not limited to the lungs: the same biological pathways explain why long-
term exposure to fine particles is consistently linked to heart attacks, strokes, diabetes, dementia,
cancer, and premature death. Critically, harmful effects are observed even at relatively low levels of
exposure. Scientists have not identified any concentration of P