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45 p, 2.0 MB Increasing meteorological drought under climate change reduces terrestrial ecosystem productivity and carbon storage / Zeng, Zhaoqi (Chinese Academy of Sciences. Institute of Geographic Sciences and Natural Resources Research) ; Wu, Wenxiang (Chinese Academy of Sciences. Institute of Geographic Sciences and Natural Resources Research) ; Li, Yamei (Chinese Academy of Sciences. Institute of Tibetan Plateau Research) ; Huang, Chong (Chinese Academy of Sciences. Institute of Geographic Sciences and Natural Resources Research) ; Zhang, Xueqin (Chinese Academy of Sciences. Institute of Geographic Sciences and Natural Resources Research) ; Peñuelas, Josep (Centre de Recerca Ecològica i d'Aplicacions Forestals) ; Zhang, Yao (Peking University. Sino-French Institute for Earth System Science) ; Gentine, Pierre (Columbia University. Department of Earth and Environmental Engineering) ; Li, Zhaolei (Southwest University (Chongqing). College of Resources and Environment) ; Wang, Xiaoyue (Chinese Academy of Sciences. Institute of Geographic Sciences and Natural Resources Research) ; Huang, Han (Chinese Academy of Sciences. Institute of Geographic Sciences and Natural Resources Research) ; Ren, Xinshuai (Chinese Academy of Sciences. Institute of Geographic Sciences and Natural Resources Research) ; Ge, Quansheng (Chinese Academy of Sciences. Institute of Geographic Sciences and Natural Resources Research)
Plants on land absorb about 30% of the CO2 produced by human activities each year, meaning they have mitigated, to some degree, the global warming impacts of human emissions. However, plants are also vulnerable to climate change. [...]
2023 - 10.1016/j.oneear.2023.09.007
One Earth, Vol. 6, issue 10 (Oct. 2023) , p. 1326-1339  

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