生物圈
光合作用
陆生植物
陆地生态系统
环境科学
碳汇
碳循环
全球变化
生态系统
约束(计算机辅助设计)
生物圈模型
大气科学
生态学
气候变化
生物
地质学
数学
植物
几何学
作者
Trevor F. Keenan,Xiangzhong Luo,Benjamin D. Stocker,Martin G. De Kauwe,Belinda E. Medlyn,I. Colin Prentice,Nicholas G. Smith,César Terrer,Han Wang,Yao Zhang,Sha Zhou
标识
DOI:10.1038/s41558-023-01867-2
摘要
Abstract Theory predicts that rising CO 2 increases global photosynthesis, a process known as CO 2 fertilization, and that this is responsible for much of the current terrestrial carbon sink. The estimated magnitude of the historic CO 2 fertilization, however, differs by an order of magnitude between long-term proxies, remote sensing-based estimates and terrestrial biosphere models. Here we constrain the likely historic effect of CO 2 on global photosynthesis by combining terrestrial biosphere models, ecological optimality theory, remote sensing approaches and an emergent constraint based on global carbon budget estimates. Our analysis suggests that CO 2 fertilization increased global annual terrestrial photosynthesis by 13.5 ± 3.5% or 15.9 ± 2.9 PgC (mean ± s.d.) between 1981 and 2020. Our results help resolve conflicting estimates of the historic sensitivity of global terrestrial photosynthesis to CO 2 and highlight the large impact anthropogenic emissions have had on ecosystems worldwide.
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