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Global health costs of ambient PM25 from combustion sources: a modelling study supporting air pollution control strategies

delete2024-07-01
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PRE
AI
H
Hao Yin *
E
Erin E McDuffie
R
Randall V Martin
M
Michael Bräuer
DOI:10.1016/S2542-5196(24)00098-6delete
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Abstract

Abstract

En 中文
Background Climate actions targeting combustion sources can generate large ancillary health benefits via associated air-quality improvements. Therefore, understanding the health costs associated with ambient fine particulate matter (PM25) from combustion sources can guide policy design for both air pollution and climate mitigation efforts. Methods In this modelling study, we estimated the health costs attributable to ambient PM25 from six major combustion sources across 204 countries using updated concentration-response models and an age-adjusted valuation method. We defined major combustion sources as the sum of total coal, liquid fuel and natural gas, solid biofuel, agricultural waste burning, other fires, and 50% of the anthropogenic fugitive, combustion, and industrial dust source. Findings Global long-term exposure to ambient PM25 from combustion sources imposed US$11 (95% uncertainty interval 08-15) trillion in health costs in 2019, accounting for 56% of the total health costs from all PM25 sources. Comparing source contributions to PM25 concentrations and health costs, we observed a higher share of health costs from combustion sources compared to their contribution to population-weighted PM25 concentration across 134 countries, accounting for more than 87% of the global population. This disparity was primarily attributed to the non-linear relationship between PM25 concentration and its associated health costs. Globally, phasing out fossil fuels can generate 23% higher relative health benefits compared to their share of PM25 reductions. Specifically, the share of health costs for total coal was 36% higher than the source's contributions to corresponding PM25 concentrations and the share of health costs for liquid fuel and natural gas was 12% higher. Other than fossil fuels, South Asia was expected to show 16% greater relative health benefits than the percentage reduction in PM25 from the abatement of solid biofuel emissions. Interpretation In most countries, targeting combustion sources might offer greater health benefits than non-combustion sources. This finding provides additional rationale for climate actions aimed at phasing out combustion sources, especially those related to fossil fuels and solid biofuel. Mitigation efforts designed according to source-specific health costs can more effectively avoid health costs than strategies that depend solely on the source contributions to overall PM25 concentration.
Keywords:
STATISTICAL LIFE
PREMATURE MORTALITY
AGE

Journal

Lancet Planetary Health cover
Lancet Planetary Health
IF:
21.6
Papers:
699
Citations:
1.1W

Organization

W
washington university (wustl)
Scholars:
5.4W
Papers: 4.5W
Citations: 70
U
University of British Columbia
Scholars:
6.9W
Papers: 6.1W
Citations: 8.6W