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Particulate matter air pollution and national and county life expectancy loss in the USA: A spatiotemporal analysis

Author

Listed:
  • James E Bennett
  • Helen Tamura-Wicks
  • Robbie M Parks
  • Richard T Burnett
  • C Arden Pope III
  • Matthew J Bechle
  • Julian D Marshall
  • Goodarz Danaei
  • Majid Ezzati

Abstract

Background: Exposure to fine particulate matter pollution (PM2.5) is hazardous to health. Our aim was to directly estimate the health and longevity impacts of current PM2.5 concentrations and the benefits of reductions from 1999 to 2015, nationally and at county level, for the entire contemporary population of the contiguous United States. Methods and findings: We used vital registration and population data with information on sex, age, cause of death, and county of residence. We used four Bayesian spatiotemporal models, with different adjustments for other determinants of mortality, to directly estimate mortality and life expectancy loss due to current PM2.5 pollution and the benefits of reductions since 1999, nationally and by county. The covariates included in the adjusted models were per capita income; percentage of population whose family income is below the poverty threshold, who are of Black or African American race, who have graduated from high school, who live in urban areas, and who are unemployed; cumulative smoking; and mean temperature and relative humidity. In the main model, which adjusted for these covariates and for unobserved county characteristics through the use of county-specific random intercepts, PM2.5 pollution in excess of the lowest observed concentration (2.8 μg/m3) was responsible for an estimated 15,612 deaths (95% credible interval 13,248–17,945) in females and 14,757 deaths (12,617–16,919) in males. These deaths would lower national life expectancy by an estimated 0.15 years (0.13–0.17) for women and 0.13 years (0.11–0.15) for men. The life expectancy loss due to PM2.5 was largest around Los Angeles and in some southern states such as Arkansas, Oklahoma, and Alabama. At any PM2.5 concentration, life expectancy loss was, on average, larger in counties with lower income and higher poverty rate than in wealthier counties. Reductions in PM2.5 since 1999 have lowered mortality in all but 14 counties where PM2.5 increased slightly. The main limitation of our study, similar to other observational studies, is that it is not guaranteed for the observed associations to be causal. We did not have annual county-level data on other important determinants of mortality, such as healthcare access and quality and diet, but these factors were adjusted for with use of county-specific random intercepts. Conclusions: According to our estimates, recent reductions in particulate matter pollution in the USA have resulted in public health benefits. Nonetheless, we estimate that current concentrations are associated with mortality impacts and loss of life expectancy, with larger impacts in counties with lower income and higher poverty rate. Majid Ezzati and colleagues study associations between particular matter air pollution and life expectancy at county level across the USA.Why was this study done?: What did the researchers do and find?: What do these findings mean?:

Suggested Citation

  • James E Bennett & Helen Tamura-Wicks & Robbie M Parks & Richard T Burnett & C Arden Pope III & Matthew J Bechle & Julian D Marshall & Goodarz Danaei & Majid Ezzati, 2019. "Particulate matter air pollution and national and county life expectancy loss in the USA: A spatiotemporal analysis," PLOS Medicine, Public Library of Science, vol. 16(7), pages 1-18, July.
  • Handle: RePEc:plo:pmed00:1002856
    DOI: 10.1371/journal.pmed.1002856
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    Cited by:

    1. Ruaa Al Juboori & Divya S. Subramaniam & Leslie Hinyard & J. S. Onésimo Sandoval, 2023. "Unveiling Spatial Associations between COVID-19 Severe Health Index, Racial/Ethnic Composition, and Community Factors in the United States," IJERPH, MDPI, vol. 20(17), pages 1-17, August.
    2. Sana Basheer & Haroon Rashid & Abdul Nasir & Rana Ali Nawaz, 2019. "Spatial and Temporal Variability Analysis of PM2.5 Concentration in Lahore City," Environmental Contaminants Reviews (ECR), Zibeline International Publishing, vol. 2(1), pages 06-10, October.
    3. Annunziata Faustini & Marina Davoli, 2020. "Attributable Risk to Assess the Health Impact of Air Pollution: Advances, Controversies, State of the Art and Future Needs," IJERPH, MDPI, vol. 17(12), pages 1-17, June.
    4. Huan Wang & Zhenyu Chen & Pan Zhang, 2022. "Spatial Autocorrelation and Temporal Convergence of PM 2.5 Concentrations in Chinese Cities," IJERPH, MDPI, vol. 19(21), pages 1-11, October.
    5. Amin Kiaghadi & Hanadi S Rifai & Winston Liaw, 2020. "Assessing COVID-19 risk, vulnerability and infection prevalence in communities," PLOS ONE, Public Library of Science, vol. 15(10), pages 1-21, October.
    6. Wang, Shaobin & Ren, Zhoupeng & Liu, Xianglong & Yin, Qian, 2022. "Spatiotemporal trends in life expectancy and impacts of economic growth and air pollution in 134 countries: A Bayesian modeling study," Social Science & Medicine, Elsevier, vol. 293(C).
    7. Jihwan Yang & Sungho Tae & Hyunsik Kim, 2021. "Technology for Predicting Particulate Matter Emissions at Construction Sites in South Korea," Sustainability, MDPI, vol. 13(24), pages 1-14, December.
    8. Aloys Prinz & David J. Richter, 2021. "Feinstaubbelastung und Lebenserwartung in Deutschland," AStA Wirtschafts- und Sozialstatistisches Archiv, Springer;Deutsche Statistische Gesellschaft - German Statistical Society, vol. 15(3), pages 237-272, December.
    9. Natália Cristina de Oliveira & Pedro Balikian Júnior & Arnaldo Tenório da Cunha Júnior & Edson de Souza Bento & Josealdo Tonholo & Thiago Aquino & Filipe Antonio de Barros Sousa & Gustavo Gomes de Ara, 2023. "Environmental Planning and Non-Communicable Diseases: A Systematic Review on the Role of the Metabolomic Profile," IJERPH, MDPI, vol. 20(14), pages 1-15, July.
    10. Hekmatpour, Peyman & Leslie, Carrie McLachlin, 2022. "Ecologically unequal exchange and disparate death rates attributable to air pollution: A comparative study of 169 countries from 1991 to 2017," OSF Preprints racms, Center for Open Science.

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