Spatial heterogeneity in post-fire vegetation productivity recovery and its drivers
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Publisher
Springer Science and Business Media LLC
Link
https://www.nature.com/articles/s41561-024-01521-2.pdf
Reference4 articles.
1. Tangney, R. et al. Success of post-fire plant recovery strategies varies with shifting fire seasonality. Commun. Earth Environ. 3, 126 (2022). This paper reports how post-fire plant recruitment, reproduction and survival are affected by fires that occur outside of the historical fire season.
2. Yue, X. & Unger, N. Fire air pollution reduces global terrestrial productivity. Nat. Commun. 9, 5413 (2018). This paper explores the net impacts of fire-induced ozone damage and the diffuse fertilization effect of aerosols on GPP.
3. Li, F., Bond-Lamberty, B. & Levis, S. Quantifying the role of fire in the Earth system – part 2: impact on the net carbon balance of global terrestrial ecosystems for the 20th century. Biogeosciences 11, 1345–1360 (2014). This paper provides a quantitative assessment of the impact of fire on the net carbon balance of global terrestrial ecosystems and examines the roles of the direct and indirect effects of fire.
4. Bousquet, E., Mialon, A., Rodriguez-Fernandez, N., Mermoz, S. & Kerr, Y. Monitoring post-fire recovery of various vegetation biomes using multi-wavelength satellite remote sensing. Biogeosciences 19, 3317–3336 (2022). This paper provides a quantitative assessment of the post-fire recovery of various vegetation biomes using multiple vegetation indices derived from various sensors.
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