2025/01/01 by Dajeong Ham, Youn‐Hee Lim, Soontae Kim +2 · 1 voice · 1 citation
Environmental Science · Health Professions · #Air Quality and Health Impacts #Climate Change and Health Impacts #Global Health Care Issues
paper · pdf · doi:10.3346/jkms.2025.40.e115
openalex publication_date 2025/01/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/01
Background: Global warming has raised the earth's temperature approximately 1C compared to the pre-industrial level.Particulate matter is one pathway through which climate change affects health.This study aimed to estimate the attribution of PM 2.5 on mortality associated with increased temperatures in seven major Korean cities. Methods: Our data includes daily non-accidental mortality counts, mean humidity, mean PM 2.5 concentration, and mean temperature from 2010 to 2019.Data on daily mean temperature was obtained from the public data portal of the Korea Meteorological Administration.Because the monitoring of PM 2.5 concentration in South Korea started in 2015, we utilized modeling data of the daily mean PM 2.5 concentration from 2010 to 2014.For the period between 2015 and 2019, we used monitoring stations to obtain the daily mean PM 2.5 concentration.Non-accidental mortality counts (ICD-10: A00-R99) were extracted from the cause-of-death statistics in Korea.To measure the attribution of PM 2.5 , we conducted mediation analysis.Using the mediation analysis results, we estimated attributable fraction (AF) of increase in temperature compared to climate normal on mortality.Results: The mediating effects of PM 2.5 were observed on days warmer than minimum mortality temperature.The pattern of this mediation effect was similarly observed among those aged 65 years.In 2019, the AF of the total effect of temperature was from 3.15% to 4.25% in these cities.The AF of indirect effect through PM 2.5 was up to 11% of that of the total effect. Conclusion:We observed that part of the health risk from increasing temperature is attributable to PM 2.5 .These results suggest that the health impacts of climate change can be mitigated by regulating particulate matter pollution as well as greenhouse gas emissions.