Cordero, R. R. et al. Extreme fire weather in Chile driven by climate change and El Niño–Southern Oscillation (ENSO). Sci. Rep. 14, 1974 (2024).
Jones, M. W. et al. Global rise in forest fire emissions linked to climate change in the extratropics. Science 386, eadl5889 (2024).
Lentini, G. et al. Mount Rwenzori (4750 m a.s.l., Uganda): meteorological characterization and air-mass transport analysis. Geogr. Fis. Din. Quat. 34, 183–193 (2011).
Ivory, S. J. & Russell, J. Lowland forest collapse and early human impacts at the end of the African Humid Period at Lake Edward, equatorial East Africa. Quat. Res. 89, 7–20 (2018).
Miller, J. E. D. & Safford, H. D. Are plant community responses to wildfire contingent upon historical disturbance regimes? Glob. Ecol. Biogeogr. 29, 1621–1633 (2020).
Andela, N. et al. A human-driven decline in global burned area. Science 356, 1356–1362 (2017).
Hemp, A. Climate change-driven forest fires marginalize the impact of ice cap wasting on Kilimanjaro. Glob. Change Biol. 11, 1013–1023 (2005).
Bowman, D. M. J. S. et al. Fire in the Earth system. Science 324, 481–484 (2009).
Wimberly, M. C., Wanyama, D., Doughty, R., Peiro, H. & Crowell, S. Increasing fire activity in African tropical forests Is associated with deforestation and climate change. Geophys. Res. Lett. 51, e2023GL106240 (2024).
Ivory, S. J. et al. Highland forest dynamics across equatorial East Africa during the end of the African humid period. Quat. Int. 713, 109575 (2024).
... continue reading