Skip to content

Shifting PM2.5 Control from Mass to Toxicity for Health Equity Worldwide.

Aug 2026 · Environmental Science and Technology · Vol 60 35, pp. 24545-24552 · 0 citations · 67 references
Medicine

Abstract

Fine particulate matter (PM2.5) remains the leading cause of premature deaths, despite declining mass concentrations of PM2.5 in the atmosphere. Age-standardized attributable death rates demonstrated divergent trends worldwide over the past decade, indicating that the uniform toxicity assumption underlying current regulations warrants re-examination. In this perspective, we synthesize recent advances in toxicological evaluation, epidemiological research, and modeling studies to advocate for a toxicity-based control as a future promising option. Incomplete combustion sources, especially residential solid fuels and wildfires, exhibit the highest toxicity per unit PM2.5 mass from primary emissions to secondary aging. Integrating source-specific toxicities, high-risk regions (South Asia, Southeast Asia, Sub-Saharan Africa, Andean Latin America, and China) show substantially elevated toxicity-adjusted PM2.5 exposure. Low-income populations, which account for around 8.2% of the global population, bear 24.0% of the global cumulative toxicity-adjusted exposure burden, mainly driven by reliance on cheap solid fuels and wildfire emissions. We suggest that prioritizing control of high-toxicity PM2.5 sources in low- and midlow-income regions could complement current mass-based reductions to further mitigate health inequalities. This toxicity-focused framework offers actionable pathways for policymakers and environmental justice scholars, aligning air quality management with climate, equity, and sustainable development goals.

View source

Similar papers

Open access 2026

The dual impact of carbon neutrality and population aging on PM2.5-related mortality and economic burden in China

Despite considerable regulatory interventions to mitigate air pollution, fine particulate matter (PM2.5) remains a critical health threat across China. Carbon neutrality strategies, though primarily aimed at mitigating climate change, may also yield substantial co-benefits for air quality and public health. However, th...

Jian-Hui Guo, Lin Lin, P. Koutrakis et al. · 0 citations
Sep 2026

Ambient PM1-Related Health Burdens and Mortality Influencing Factors in China: Historical Trends to Future Projections.

Because of its small particle size and toxic potential, PM1 may pose substantial health risks. However, long-term historical and future PM1-attributable health burdens and their influencing factors remain poorly understood for China. Here, we estimated historical PM1 exposure across China for 2016-2024 using an Extreme...

Guang Chen, Yu-Si Liu, Li Chen et al. · 0 citations
Review Open access Sep 2026

AMBIENT PM2.5 IN EAST AFRICA: A COMPREHENSIVE REVIEW OF DRIVERS, IMPACTS, MONITORING AND POLICY DIRECTIONS

Ambient fine particulate matter (PM₂.₅) has emerged as one of the most pressing environmental health challenges in East Africa, where rapid urbanization, industrial expansion, and reliance on biomass fuels converge to elevate exposure levels. Despite its recognized role in respiratory and cardiovascular morbidity, moni...

Lawrence Mwangi Mukuru, P. Njuru, Adriana Mbandi et al. · 0 citations
Open access Aug 2026

Photochemical ultrafine particles pose potential inflammatory risk despite low PM2.5 mass.

BACKGROUND Air quality improvements have reduced PM2.5 mass, but particle surface area, which primarily contributes to inflammatory responses, may not follow the same trend, potentially creating health-relevant exposure. METHODS To investigate this potential decoupling, we analyzed three years of observations in Fuzh...

Hao-Bin Zhong, Lin Wang, Wei Xu et al. · 0 citations
Sep 2026

The overlooked changes: health co-benefits from the reduction of ambient carbon monoxide in China.

Previous studies have primarily emphasized the emission reduction benefits of particulate matter and nitrogen oxides, while largely overlooking the substantial long-term decline in ambient carbon monoxide (CO) concentrations. This paper systematically evaluated the spatiotemporal trends, driving factors, and associated...

Zong-Shuang Wang, Jun-Gang Lv · 0 citations
Open access Sep 2026

A Multi-Model Assessment of the Air Quality and Health Impacts of U.S. Energy Decarbonization

Net-zero transitions are expected to reduce ambient fine particulate matter (PM2.5) concentrations and the associated mortality burden. The magnitude and distribution of these health effects are substantially affected by energy technology choices and the resulting precursor emissions that contribute to ambient PM2.5. O...

Jinyu Shiwang, Wei Peng, J. Bistline et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.