2016•Journal of people, plants, and environmentOpen access

Estimating Net Primary Productivity under Climate Change by Application of Global Forest Model (G4M)

Sunyong Sung, Nicklas Forsell, Kindermann Georg, Dong Kun Lee

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Abstract

Net primary productivity (NPP) is considered as an important indicator for forest ecosystem since the role of the forest is highlighted as a key sector for mitigating climate change.The objective of this research is to estimate changes on the net primary productivity of forest in South Korea under the different climate change scenarios.The G4M (Global Forest Model) was used to estimate current NPP and future NPP trends in different climate scenarios.As input data, we used detailed (1 km × 1 km) downscaled monthly precipitation and average temperature from Korea Meteorological Administration (KMA) for four RCP (Representative Concentration Pathway) scenarios (2.6/4.5/6.0/8.5).We used MODerate resolution Imaging Spectroradiometer (MODIS) NPP data for the model validation.Current NPP derived from G4M showed similar patterns with MODIS NPP data.Total NPP of forest increased in most of RCP scenarios except RCP 8.5 scenario because the average temperature increased by 5°C.In addition, the standard deviation of annual precipitation was the highest in RCP8.5 scenario.Precipitation change in wider range could cause water stress on vegetation that affects decrease of forest productivity.We calculated future NPP change in different climate change scenarios to estimate carbon sequestration in forest ecosystem.If there was no biome changes in the future NPP will be decreased up to 90%.On the other hand, if proper biome change will be conducted, future NPP will be increased 50% according to scenarios.

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Net primary productivity (NPP) is considered as an important indicator for forest ecosystem since the role of the forest is highlighted as a key sector for mitigating climate change.The objective of this research is to estimate changes on the net primary productivity of forest in South Korea under the different climate change scenarios.The G4M (Global Forest Model) was used to estimate current NPP and future NPP trends in different climate scenarios.As input data, we used detailed (1 km × 1 km) downscaled monthly precipitation and average temperature from Korea Meteorological Administration (KMA) for four RCP (Representative Concentration Pathway) scenarios (2.6/4.5/6.0/8.5).We used MODerate resolution Imaging Spectroradiometer (MODIS) NPP data for the model validation.Current NPP derived from G4M showed similar patterns with MODIS NPP data.Total NPP of forest increased in most of RCP scenarios except RCP 8.5 scenario because the average temperature increased by 5°C.In addition, the standard deviation of annual precipitation was the highest in RCP8.5 scenario.Precipitation change in wider range could cause water stress on vegetation that affects decrease of forest productivity.We calculated future NPP change in different climate change scenarios to estimate carbon sequestration in forest ecosystem.If there was no biome changes in the future NPP will be decreased up to 90%.On the other hand, if proper biome change will be conducted, future NPP will be increased 50% according to scenarios.

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Available abstract

Net primary productivity (NPP) is considered as an important indicator for forest ecosystem since the role of the forest is highlighted as a key sector for mitigating climate change.The objective of this research is to estimate changes on the net primary productivity of forest in South Korea under the different climate change scenarios.The G4M (Global Forest Model) was used to estimate current NPP and future NPP trends in different climate scenarios.As input data, we used detailed (1 km × 1 km) downscaled monthly precipitation and average temperature from Korea Meteorological Administration (KMA) for four RCP (Representative Concentration Pathway) scenarios (2.6/4.5/6.0/8.5).We used MODerate resolution Imaging Spectroradiometer (MODIS) NPP data for the model validation.Current NPP derived from G4M showed similar patterns with MODIS NPP data.Total NPP of forest increased in most of RCP scenarios except RCP 8.5 scenario because the average temperature increased by 5°C.In addition, the standard deviation of annual precipitation was the highest in RCP8.5 scenario.Precipitation change in wider range could cause water stress on vegetation that affects decrease of forest productivity.We calculated future NPP change in different climate change scenarios to estimate carbon sequestration in forest ecosystem.If there was no biome changes in the future NPP will be decreased up to 90%.On the other hand, if proper biome change will be conducted, future NPP will be increased 50% according to scenarios.

Key concepts: Primary production, Biome, Environmental science, Climate change, Moderate-resolution imaging spectroradiometer, Precipitation, Carbon sequestration, Representative Concentration Pathways

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