Long-term decline of the Amazon carbon sink

碳汇 亚马逊雨林 水槽(地理) 环境科学 亚马逊河 地球大气中的二氧化碳 气候变化 碳循环 二氧化碳 生物量(生态学) 固碳 大气科学 生态学 地理 生态系统 生物 地质学 地图学
作者
Roel Brienen,Oliver L. Phillips,Ted R. Feldpausch,Manuel Gloor,Timothy R. Baker,Jon Lloyd,Gabriela López‐González,Abel Monteagudo‐Mendoza,Yadvinder Malhi,Simon L. Lewis,Rodolfo Vásquez,Miguel N. Alexiades,Estebán Álvarez,Patricia Alvarez‐Loayza,Ana Andrade,L. E. O. C. Aragão,E.J.M.M. Arets,E. J. M. M. Arets,L. Arroyo,Olaf Bánki,Christopher Baraloto,Jorcely Barroso,Jorcely Barroso,Damien Bonal,José Luís Camargo,José Luís Camargo,Víctor Chama Moscoso,Kuo‐Jung Chao,K. J. Chao,Jérôme Chave,J. A. Comiskey,Fernando Cornejo Valverde,L. da Costa,Anthony Di Fiore,Anthony Di Fiore,Sophie Fauset,Sophie Fauset,David Galbraith,David Galbraith,Nikée Groot,Bruno Hérault,Bruno Hérault,Eurídice N. Honorio Coronado,Eurídice N. Honorio Coronado,Helen C. Keeling,Tim J. Killeen,Susan G. Laurance,Susan G. Laurance,Juan Carlos Licona,Beatriz Schwantes Marimon,Ben Hur Marimon,B. H. Marimon-Junior,David Neill,David Neill,Euler Melo Nogueira,Nadir Pallqui Camacho,Nadir Pallqui Camacho,Alexander Parada,G. Pardo‐Molina,Marielos Peña‐Claros,M. Peña-Claros,Nigel C. A. Pitman,Lourens Poorter,L. Poorter,Adriana Prieto,C. A. Quesada,F. Ramírez,H. Ramírez-Angulo,Zorayda Restrepo Correa,Adriana Prieto,Rafael P. Salomão,Rafael P. Salomão,Michael P. Schwarz,Javier E. Silva‐Espejo,Marcos Silveira,M. Silveira,Joey Talbot,Hans ter Steege,Hans ter Steege,J. Teran-Aguilar,Hans ter Steege,Raquel Thomas‐Caesar,M. Toledo,Ricardo Keichi Umetsu,Geertje van der Heijden,G. M. F. van der Heijden,Ima Célia Guimarães Vieira,Simone Aparecida Vieira,Emilio Vilanova,Vincent A. Vos,Vincent A. Vos,Roderick Zagt
出处
期刊:Nature [Springer Nature]
卷期号:519 (7543): 344-348 被引量:982
标识
DOI:10.1038/nature14283
摘要

Atmospheric carbon dioxide records indicate that the land surface has acted as a strong global carbon sink over recent decades, with a substantial fraction of this sink probably located in the tropics, particularly in the Amazon. Nevertheless, it is unclear how the terrestrial carbon sink will evolve as climate and atmospheric composition continue to change. Here we analyse the historical evolution of the biomass dynamics of the Amazon rainforest over three decades using a distributed network of 321 plots. While this analysis confirms that Amazon forests have acted as a long-term net biomass sink, we find a long-term decreasing trend of carbon accumulation. Rates of net increase in above-ground biomass declined by one-third during the past decade compared to the 1990s. This is a consequence of growth rate increases levelling off recently, while biomass mortality persistently increased throughout, leading to a shortening of carbon residence times. Potential drivers for the mortality increase include greater climate variability, and feedbacks of faster growth on mortality, resulting in shortened tree longevity. The observed decline of the Amazon sink diverges markedly from the recent increase in terrestrial carbon uptake at the global scale, and is contrary to expectations based on models.
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