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Biophysical impacts of northern vegetation changes on seasonal warming patterns

Environmental Studies and Forestry

Biophysical impacts of northern vegetation changes on seasonal warming patterns

X. Lian, S. Jeong, et al.

Discover how the seasonal greening of Northern Hemisphere ecosystems alters near-surface warming and energy exchanges! This research, conducted by Xu Lian, Sujong Jeong, Chang-Eui Park, Hao Xu, Laurent Z. X. Li, Tao Wang, Pierre Gentine, Josep Peñuelas, and Shilong Piao, reveals exciting insights on how summer greening dampens warming while inducing intriguing time-lagged climate effects.... show more
Abstract
The seasonal greening of Northern Hemisphere (NH) ecosystems, due to extended growing periods and enhanced photosynthetic activity, could modify near-surface warming by perturbing land-atmosphere energy exchanges, yet this biophysical control on warming seasonality is underexplored. By performing experiments with a coupled land-atmosphere model, here we show that summer greening effectively dampens NH warming by −0.15 ± 0.03 °C for 1982–2014 due to enhanced evapotranspiration. However, greening generates weak temperature changes in spring (+0.02 ± 0.06 °C) and autumn (−0.05 ± 0.05 °C), because the evaporative cooling is counterbalanced by radiative warming from albedo and water vapor feedbacks. The dwindling evaporative cooling towards cool seasons is also supported by state-of-the-art Earth system models. Moreover, greening-triggered energy imbalance is propagated forward by atmospheric circulation to subsequent seasons and causes sizable time-lagged climate effects. Overall, greening makes winter warmer and summer cooler, attenuating the seasonal amplitude of NH temperature. These findings demonstrate complex tradeoffs and linkages of vegetation-climate feedbacks among seasons.
Publisher
NATURE COMMUNICATIONS
Published On
Jul 07, 2022
Authors
Xu Lian, Sujong Jeong, Chang-Eui Park, Hao Xu, Laurent Z. X. Li, Tao Wang, Pierre Gentine, Josep Peñuelas, Shilong Piao
Tags
seasonal greening
Northern Hemisphere
near-surface warming
evapotranspiration
climate effects
temperature amplitude
land-atmosphere interactions
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