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Exploring the environmental drivers of vegetation seasonality changes in the northern extratropical latitudes: a quantitative analysis
by
Wang, Yaoping
, Zhang, Yulong
, Shi, Xiaoying
, Kong, Xiangxu
, Mao, Jiafu
, Chen, Haishan
, Jin, Mingzhou
in
Carbon dioxide
/ Carbon dioxide concentration
/ Climate change
/ Ecosystem management
/ environmental drivers
/ Environmental factors
/ factorial simulations
/ Land cover
/ Land management
/ Land use
/ Latitude
/ Leaf area
/ Leaf area index
/ MODIS
/ Moisture effects
/ Quantitative analysis
/ Remote sensing
/ Seasonal variations
/ Short wave radiation
/ Soil moisture
/ Soil temperature
/ Sustainable ecosystems
/ Vegetation
/ Vegetation growth
/ vegetation seasonality
2023
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Exploring the environmental drivers of vegetation seasonality changes in the northern extratropical latitudes: a quantitative analysis
by
Wang, Yaoping
, Zhang, Yulong
, Shi, Xiaoying
, Kong, Xiangxu
, Mao, Jiafu
, Chen, Haishan
, Jin, Mingzhou
in
Carbon dioxide
/ Carbon dioxide concentration
/ Climate change
/ Ecosystem management
/ environmental drivers
/ Environmental factors
/ factorial simulations
/ Land cover
/ Land management
/ Land use
/ Latitude
/ Leaf area
/ Leaf area index
/ MODIS
/ Moisture effects
/ Quantitative analysis
/ Remote sensing
/ Seasonal variations
/ Short wave radiation
/ Soil moisture
/ Soil temperature
/ Sustainable ecosystems
/ Vegetation
/ Vegetation growth
/ vegetation seasonality
2023
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Exploring the environmental drivers of vegetation seasonality changes in the northern extratropical latitudes: a quantitative analysis
by
Wang, Yaoping
, Zhang, Yulong
, Shi, Xiaoying
, Kong, Xiangxu
, Mao, Jiafu
, Chen, Haishan
, Jin, Mingzhou
in
Carbon dioxide
/ Carbon dioxide concentration
/ Climate change
/ Ecosystem management
/ environmental drivers
/ Environmental factors
/ factorial simulations
/ Land cover
/ Land management
/ Land use
/ Latitude
/ Leaf area
/ Leaf area index
/ MODIS
/ Moisture effects
/ Quantitative analysis
/ Remote sensing
/ Seasonal variations
/ Short wave radiation
/ Soil moisture
/ Soil temperature
/ Sustainable ecosystems
/ Vegetation
/ Vegetation growth
/ vegetation seasonality
2023
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Exploring the environmental drivers of vegetation seasonality changes in the northern extratropical latitudes: a quantitative analysis
Journal Article
Exploring the environmental drivers of vegetation seasonality changes in the northern extratropical latitudes: a quantitative analysis
2023
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Overview
Vegetation seasonality in the northern extratropical latitudes (NEL) has changed dramatically, but our understanding of how it responds to climate change (e.g. temperature, soil moisture, shortwave radiation) and human activities (e.g. elevated CO 2 concentration) remains insufficient. In this study, we used two remote-sensing-based leaf area index and factorial simulations from the TRENDY models to attribute the changes in the integrated vegetation seasonality index ( S ), which captures both the concentration and magnitude of vegetation growth throughout the year, to climate, CO 2 , and land use and land cover change (LULCC). We found that from 2003 to 2020, the enhanced average S in the NEL (MODIS: 0.0022 yr −1 , p < 0.05; GLOBMAP: 0.0018 yr −1 , p < 0.05; TRENDY S3 [i.e. the scenario considering both time-varying climate, CO 2 , and LULCC]: 0.0011 ± 7.5174 × 10 −4 yr −1 , p < 0.05) was primarily determined by the elevated CO 2 concentration (5.3 × 10 −4 ± 3.8 × 10 −4 yr −1 , p < 0.05) and secondly controlled by the combined climate change (4.6 × 10 −4 ± 6.6 × 10 −4 yr −1 , p > 0.1). Geographically, negative trends in the vegetation growth concentration were dominated by climate change (31.4%), while both climate change (47.9%) and CO 2 (31.9%) contributed to the enhanced magnitude of vegetation growth. Furthermore, around 60% of the study areas showed that simulated major climatic drivers of S variability exhibited the same dominant factor as observed in either the MODIS or GLOBMAP data. Our research emphasizes the crucial connection between environmental factors and vegetation seasonality, providing valuable insights for policymakers and land managers in developing sustainable ecosystem management strategies amidst a changing climate.
Publisher
IOP Publishing
Subject
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