Resultats globals: 3 registres trobats en 0.02 segons.
Articles, 3 registres trobats
Articles 3 registres trobats  
1.
Climate change increases carbon allocation to leaves in early leaf green-up / Meng, Fandong (Chinese Academy of Sciences. Institute of Tibetan Plateau Research) ; Hong, Songbai (Peking University. College of Urban and Environmental Sciences) ; Wang, Jiawei (Peking University. College of Urban and Environmental Sciences) ; Chen, Anping (Colorado State University. Department of Biology) ; Zhang, Yao (Sino-French Institute for Earth System Science) ; Zhang, Yichen (Peking University. College of Urban and Environmental Sciences) ; Janssens, Ivan (University of Antwerp. Department of Biology) ; Mao, Jiafu (Oak Ridge National Laboratory) ; Myneni, Ranga B. (Boston University. Department of Earth and Environment) ; Peñuelas, Josep (Centre de Recerca Ecològica i d'Aplicacions Forestals) ; Piao, Shilong (Chinese Academy of Sciences. Institute of Tibetan Plateau Research)
Global greening, characterized by an increase in leaf area index (LAI), implies an increase in foliar carbon (C). Whether this increase in foliar C under climate change is due to higher photosynthesis or to higher allocation of C to leaves remains unknown. [...]
2023 - 10.1111/ele.14205
Ecology letters, Vol. 26, Issue 5 (May 2023) , p. 816-826  
2.
9 p, 3.4 MB Autumn canopy senescence has slowed down with global warming since the 1980s in the Northern Hemisphere / Zhang, Yichen (Sino-French Institute for Earth System Science) ; Hong, Songbai (Sino-French Institute for Earth System Science) ; Liu, Qiang (University of Antwerp. Department of Biology) ; Huntingford, Chris (UK Centre for Ecology and Hydrology) ; Peñuelas, Josep (Centre de Recerca Ecològica i d'Aplicacions Forestals) ; Rossi, Sergio (Université du Québec à Chicoutimi. Département des Sciences Fondamentales) ; Myneni, Ranga B. (Boston University. Department of Earth and Environment) ; Piao, Shilong (Chinese Academy of Sciences. Institute of Tibetan Plateau Research)
Climate change strongly impact vegetation phenology, with considerable potential to alter land-atmosphere carbon dioxide exchange and terrestrial carbon cycle. In contrast to well-studied spring leaf-out, the timing and magnitude of autumn senescence remains poorly understood. [...]
2023 - 10.1038/s43247-023-00835-0
Communications earth & environment, Vol. 4 (2023) , art. 173  
3.
7 p, 1.0 MB Afforestation neutralizes soil pH / Hong, Songbai (Sino-French Institute for Earth System Science) ; Piao, Shilong (Sino-French Institute for Earth System Science) ; Chen, Anping (Purdue University. Department of Forestry and Natural Resources) ; Liu, Yongwen (Sino-French Institute for Earth System Science) ; Liu, Lingli (Zhongguo ke xue yuan. Institute of Botany) ; Peng, Shushi (Sino-French Institute for Earth System Science) ; Sardans i Galobart, Jordi (Centre de Recerca Ecològica i d'Aplicacions Forestals) ; Sun, Yan (Sino-French Institute for Earth System Science) ; Peñuelas, Josep (Centre de Recerca Ecològica i d'Aplicacions Forestals) ; Zeng, Hui (Peking University Shenzhen Graduate School)
Soil pH regulates soil biogeochemical processes and has cascading effects on terrestrial ecosystem structure and functions. Afforestation has been widely adopted to increase terrestrial carbon sequestration and enhance water and soil preservation. [...]
2018 - 10.1038/s41467-018-02970-1
Nature communications, Vol. 9 (2018) , art. 520  

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