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Climate mitigation from vegetation biophysical feedbacks during the past three decades
by
Shi, Xiaoying
, Seneviratne, Sonia I.
, Wang, Yingping
, Zeng, Zhenzhong
, Wang, Tao
, Lian, Xu
, Myneni, Ranga B.
, Li, Laurent Z. X.
, Peng, Shushi
, Ciais, Philippe
, Li, Yue
, Mao, Jiafu
, Piao, Shilong
, Zhou, Liming
, Wood, Eric F.
, Friedlingstein, Pierre
, Estes, Lyndon D.
in
704/106/694/1108
/ 704/106/694/674
/ 704/158/2165/2457
/ 704/158/2454
/ Air temperature
/ Albedo
/ Albedo (solar)
/ Atmosphere
/ Atmospheric circulation
/ Atmospheric circulation changes
/ attribution
/ Climate
/ climate and earth system modelling
/ Climate Change
/ Climate change mitigation
/ Climate Change/Climate Change Impacts
/ Climate models
/ Climatology
/ Cooling
/ Cooling effects
/ Earth
/ Earth Sciences
/ Emissivity
/ Environment
/ Environmental Law/Policy/Ecojustice
/ ENVIRONMENTAL SCIENCES
/ Evapotranspiration
/ forest ecology
/ Global climate
/ Global climate models
/ Global cooling
/ Greening
/ Land cover
/ Leaf area
/ Leaf area index
/ letter
/ Mitigation
/ phenology
/ Satellite observation
/ Satellites
/ Sciences of the Universe
/ Surface temperature
/ Temperature
/ Temperature effects
/ Transmissivity
/ Vegetation
/ Vegetation changes
2017
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Climate mitigation from vegetation biophysical feedbacks during the past three decades
by
Shi, Xiaoying
, Seneviratne, Sonia I.
, Wang, Yingping
, Zeng, Zhenzhong
, Wang, Tao
, Lian, Xu
, Myneni, Ranga B.
, Li, Laurent Z. X.
, Peng, Shushi
, Ciais, Philippe
, Li, Yue
, Mao, Jiafu
, Piao, Shilong
, Zhou, Liming
, Wood, Eric F.
, Friedlingstein, Pierre
, Estes, Lyndon D.
in
704/106/694/1108
/ 704/106/694/674
/ 704/158/2165/2457
/ 704/158/2454
/ Air temperature
/ Albedo
/ Albedo (solar)
/ Atmosphere
/ Atmospheric circulation
/ Atmospheric circulation changes
/ attribution
/ Climate
/ climate and earth system modelling
/ Climate Change
/ Climate change mitigation
/ Climate Change/Climate Change Impacts
/ Climate models
/ Climatology
/ Cooling
/ Cooling effects
/ Earth
/ Earth Sciences
/ Emissivity
/ Environment
/ Environmental Law/Policy/Ecojustice
/ ENVIRONMENTAL SCIENCES
/ Evapotranspiration
/ forest ecology
/ Global climate
/ Global climate models
/ Global cooling
/ Greening
/ Land cover
/ Leaf area
/ Leaf area index
/ letter
/ Mitigation
/ phenology
/ Satellite observation
/ Satellites
/ Sciences of the Universe
/ Surface temperature
/ Temperature
/ Temperature effects
/ Transmissivity
/ Vegetation
/ Vegetation changes
2017
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Climate mitigation from vegetation biophysical feedbacks during the past three decades
by
Shi, Xiaoying
, Seneviratne, Sonia I.
, Wang, Yingping
, Zeng, Zhenzhong
, Wang, Tao
, Lian, Xu
, Myneni, Ranga B.
, Li, Laurent Z. X.
, Peng, Shushi
, Ciais, Philippe
, Li, Yue
, Mao, Jiafu
, Piao, Shilong
, Zhou, Liming
, Wood, Eric F.
, Friedlingstein, Pierre
, Estes, Lyndon D.
in
704/106/694/1108
/ 704/106/694/674
/ 704/158/2165/2457
/ 704/158/2454
/ Air temperature
/ Albedo
/ Albedo (solar)
/ Atmosphere
/ Atmospheric circulation
/ Atmospheric circulation changes
/ attribution
/ Climate
/ climate and earth system modelling
/ Climate Change
/ Climate change mitigation
/ Climate Change/Climate Change Impacts
/ Climate models
/ Climatology
/ Cooling
/ Cooling effects
/ Earth
/ Earth Sciences
/ Emissivity
/ Environment
/ Environmental Law/Policy/Ecojustice
/ ENVIRONMENTAL SCIENCES
/ Evapotranspiration
/ forest ecology
/ Global climate
/ Global climate models
/ Global cooling
/ Greening
/ Land cover
/ Leaf area
/ Leaf area index
/ letter
/ Mitigation
/ phenology
/ Satellite observation
/ Satellites
/ Sciences of the Universe
/ Surface temperature
/ Temperature
/ Temperature effects
/ Transmissivity
/ Vegetation
/ Vegetation changes
2017
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Climate mitigation from vegetation biophysical feedbacks during the past three decades
Journal Article
Climate mitigation from vegetation biophysical feedbacks during the past three decades
2017
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Overview
Greening—increasing leaf area index—affects regional climate in a number of contradictory ways. The net global effect is now revealed to be cooling that has offset the equivalent of 12% of global land-surface warming over the past 30 years.
The surface air temperature response to vegetation changes has been studied for the extreme case of land-cover change
1
,
2
,
3
,
4
,
5
; yet, it has never been quantified for the slow but persistent increase in leaf area index (LAI) observed over the past 30 years (Earth greening)
6
,
7
. Here we isolate the fingerprint of increasing LAI on surface air temperature using a coupled land–atmosphere global climate model prescribed with satellite LAI observations. We find that the global greening has slowed down the rise in global land-surface air temperature by 0.09 ± 0.02 °C since 1982. This net cooling effect is the sum of cooling from increased evapotranspiration (70%), changed atmospheric circulation (44%), decreased shortwave transmissivity (21%), and warming from increased longwave air emissivity (−29%) and decreased albedo (−6%). The global cooling originated from the regions where LAI has increased, including boreal Eurasia, Europe, India, northwest Amazonia, and the Sahel. Increasing LAI did not, however, significantly change surface air temperature in eastern North America and East Asia, where the effects of large-scale atmospheric circulation changes mask local vegetation feedbacks. Overall, the sum of biophysical feedbacks related to the greening of the Earth mitigated 12% of global land-surface warming for the past 30 years.
Publisher
Nature Publishing Group UK,Nature Publishing Group
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