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Predicted future mortality attributed to increases in temperature and PM10 concentration under representative concentration pathway scenarios

Cited 3 time in Web of Science Cited 6 time in Scopus
Authors

Jung, Jiyun; Lee, Jae Young; Lee, Hyewon; Kim, Ho

Issue Date
2020-04
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Citation
International Journal of Environmental Research and Public Health, Vol.17 No.7, p. 2600
Abstract
As climate change progresses, understanding the impact on human health associated with the temperature and air pollutants has been paramount. However, the predicted effect on temperature associated with particulate matter (PM10) is not well understood due to the difficulty in predicting the local and regional PM10. We compared temperature-attributable mortality for the baseline (2003-2012), 2030s (2026-2035), 2050s (2046-2055), and 2080s (2076-2085) based on a distributed lag non-linear model by simultaneously considering assumed levels of PM10 on historical and projected temperatures under representative concentration pathway (RCP) scenarios. The considered projected PM10 concentrations of 35, 50, 65, 80, and 95 mu g/m(3) were based on historical concentration quantiles. Our findings confirmed greater temperature-attributable risks at PM10 concentrations above 65 mu g/m(3) due to the modification effect of the pollutants on temperature. In addition, this association between temperature and PM10 was higher under RCP8.5 than RCP4.5. We also confirmed regional heterogeneity in temperature-attributable deaths by considering PM10 concentrations in South Korea with higher risks in heavily populated areas. These results demonstrated that the modification association of air pollutants on health burdens attributable to increasing temperatures should be considered by researchers and policy makers.
ISSN
1661-7827
URI
https://hdl.handle.net/10371/195967
DOI
https://doi.org/10.3390/ijerph17072600
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