Ir directamente a la navegación principal Ir directamente a la búsqueda Ir directamente al contenido principal

Changes in wildfire season in Alaska and the consequences for ambient fine PM in recent decades

  • Emily Gaw
  • , Nilkamal Jaisawal
  • , Akinleye Folorunsho
  • , Shannon Lindsey
  • , Tianjun Lu
  • , Yisi Liu
  • , Meng Wang
  • , Yang Li

Producción científica: Articlerevisión exhaustiva

3 Citas (Scopus)

Resumen

Recent studies highlight the role of climate change in creating conditions that are increasingly conducive to wildfire activity across large areas of North America. This trend raises significant concerns about the growing impacts of wildfires on regional air quality. In particular, Alaska is warming at an accelerated rate, making it critical to understand how its wildfire seasons are evolving and how these changes influence fire activity and air quality. Fire seasons mark the period each year when wildfires are most likely to occur, and their length and intensity have important implications for management and mitigation efforts aimed at protecting human health in this vulnerable region. By applying temperature thresholds, we find that Alaska's fire season has lengthened by approximately 13.8 days from the early 2000s to recent years, with an average annual increase of 0.81 days. Using fire emissions from the Global Fire Assimilation System (GFAS), we estimate an even greater increase in fire season length—up to 42.33 days—based on recorded fire start and end dates, though this may include non-natural fires. The extension of fire season, as derived from temperature thresholds, has led to an additional 2.09 × 108 kg of PM2.5 emissions, representing a 3.6% overall increase. To assess the air quality impacts of this lengthened fire season, we use the GEOS-Chem chemical transport model with GFAS fire emissions. Our results reveal that the Alaskan population has been experiencing prolonged exposure to elevated fire-driven PM2.5 levels each year, with local peaks reaching extreme levels, such as 2036.14 μg/m3 in 2010. The peak fire-driven PM2.5 concentrations during the extended fire season far exceed the U.S. Environmental Protection Agency (EPA)’s 24-h standard (35 μg/m3), underscoring the escalating air quality and public health risks in Alaska. With global implications for climate, air quality, and public health, this study provides a valuable reference for future wildfire research in fire-prone regions.

Idioma originalEnglish
Número de artículo105076
PublicaciónGlobal and Planetary Change
Volumen255
DOI
EstadoPublished - dic 2025

Nota bibliográfica

Publisher Copyright:
© 2025 Elsevier B.V.

Financiación

This research is supported by Dr. Yang Li's startup funds at Baylor University.

Financiadores
Baylor University

    ODS de las Naciones Unidas

    Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

    1. Good health and well being
      Good health and well being
    2. Climate action
      Climate action

    ASJC Scopus subject areas

    • Oceanography
    • Global and Planetary Change

    Huella

    Profundice en los temas de investigación de 'Changes in wildfire season in Alaska and the consequences for ambient fine PM in recent decades'. En conjunto forman una huella única.

    Citar esto