Abstract Afforestation and land use changes that sequester carbon from the atmosphere in the form of woody biomass have turned southern China into one of the largest carbon sinks globally, which contributes to mitigating climate change. However, forest growth saturation and available land that can be forested limit the longevity of this carbon sink, and while a plethora of studies have quantified vegetation changes over the last decades, the remaining carbon sink potential of this area is currently unknown. Here, we train a model with multiple predictors characterizing the heterogeneous landscapes of southern China and predict the biomass carbon carrying capacity of the region for 2002–2017. We compare observed and predicted biomass carbon ...
The possible response of the carbon (C) balance of China's forests to an increase in atmospheric CO(...
A number of continuous eddy covariance measurements and long-term biomass inventories had proved tha...
Afforestation is a mitigation option to reduce the increased atmospheric carbon dioxide levels as we...
Land use policies have turned southern China into one of the most intensively managed forest regions...
Plantation forests are the most effective and ecologically friendly way of absorbing CO2 and increas...
China’s forests have functioned as important carbon sinks. They are expected to have substanti...
China's forests are characterized by young forest age, low carbon density and a large area of p...
Over the last several decades, China has taken multiple measures for afforestation and natural fores...
The planted forest area and carbon sequestration have increased significantly in China, because of l...
China's terrestrial ecosystems have functioned as important carbon sinks. However, previous estimate...
Limiting the rise in global mean temperatures relies on reducing carbon dioxide (CO2) emissions and ...
The Location and mechanisms responsible for the carbon sink in northern mid-latitude Lands are uncer...
Tibet's forests, in contrast to China's other forests, are characterized by primary forests, high ca...
Mitigating carbon emissions has become a pressing concern in the process of economic development acr...
Carbon sequestration through ecological restoration programs is an increasingly important option to ...
The possible response of the carbon (C) balance of China's forests to an increase in atmospheric CO(...
A number of continuous eddy covariance measurements and long-term biomass inventories had proved tha...
Afforestation is a mitigation option to reduce the increased atmospheric carbon dioxide levels as we...
Land use policies have turned southern China into one of the most intensively managed forest regions...
Plantation forests are the most effective and ecologically friendly way of absorbing CO2 and increas...
China’s forests have functioned as important carbon sinks. They are expected to have substanti...
China's forests are characterized by young forest age, low carbon density and a large area of p...
Over the last several decades, China has taken multiple measures for afforestation and natural fores...
The planted forest area and carbon sequestration have increased significantly in China, because of l...
China's terrestrial ecosystems have functioned as important carbon sinks. However, previous estimate...
Limiting the rise in global mean temperatures relies on reducing carbon dioxide (CO2) emissions and ...
The Location and mechanisms responsible for the carbon sink in northern mid-latitude Lands are uncer...
Tibet's forests, in contrast to China's other forests, are characterized by primary forests, high ca...
Mitigating carbon emissions has become a pressing concern in the process of economic development acr...
Carbon sequestration through ecological restoration programs is an increasingly important option to ...
The possible response of the carbon (C) balance of China's forests to an increase in atmospheric CO(...
A number of continuous eddy covariance measurements and long-term biomass inventories had proved tha...
Afforestation is a mitigation option to reduce the increased atmospheric carbon dioxide levels as we...