Integrated global assessment of the natural forest carbon potential.

Lidong Mo,Constantin M Zohner,Peter B Reich,Jingjing Liang,Sergio de Miguel,Gert-Jan Nabuurs,Susanne S Renner,Johan van den Hoogen,Arnan Araza,Martin Herold, Leila Mirzagholi,Haozhi Ma,Colin Averill,Oliver L Phillips,Javier G P Gamarra,Iris Hordijk,Devin Routh,Meinrad Abegg,Yves C Adou Yao,Giorgio Alberti,Angelica M Almeyda Zambrano, Braulio Vilchez Alvarado,Esteban Alvarez-Dávila,Patricia Alvarez-Loayza,Luciana F Alves, Iêda Amaral,Christian Ammer,Clara Antón-Fernández,Alejandro Araujo-Murakami,Luzmila Arroyo,Valerio Avitabile,Gerardo A Aymard,Timothy R Baker,Radomir Bałazy,Olaf Banki,Jorcely G Barroso,Meredith L Bastian,Jean-Francois Bastin,Luca Birigazzi,Philippe Birnbaum,Robert Bitariho,Pascal Boeckx,Frans Bongers,Olivier Bouriaud,Pedro H S Brancalion,Susanne Brandl,Francis Q Brearley,Roel Brienen,Eben N Broadbent,Helge Bruelheide,Filippo Bussotti,Roberto Cazzolla Gatti,Ricardo G César,Goran Cesljar,Robin L Chazdon,Han Y H Chen,Chelsea Chisholm,Hyunkook Cho,Emil Cienciala,Connie Clark,David Clark,Gabriel D Colletta,David A Coomes,Fernando Cornejo Valverde,José J Corral-Rivas,Philip M Crim,Jonathan R Cumming,Selvadurai Dayanandan,André L de Gasper,Mathieu Decuyper,Géraldine Derroire,Ben DeVries, Ilija Djordjevic,Jiri Dolezal,Aurélie Dourdain,Nestor Laurier Engone Obiang,Brian J Enquist,Teresa J Eyre,Adandé Belarmain Fandohan,Tom M Fayle,Ted R Feldpausch,Leandro V Ferreira,Leena Finér,Markus Fischer,Christine Fletcher,Lorenzo Frizzera,Damiano Gianelle,Henry B Glick,David J Harris, Andrew Hector,Andreas Hemp,Geerten Hengeveld,Bruno Hérault,John L Herbohn,Annika Hillers,Eurídice N Honorio Coronado,Cang Hui,Thomas Ibanez,Nobuo Imai,Andrzej M Jagodziński,Bogdan Jaroszewicz,Vivian Kvist Johannsen,Carlos A Joly,Tommaso Jucker,Ilbin Jung,Viktor Karminov,Kuswata Kartawinata,Elizabeth Kearsley,David Kenfack,Deborah K Kennard,Sebastian Kepfer-Rojas,Gunnar Keppel,Mohammed Latif Khan,Timothy J Killeen,Hyun Seok Kim,Kanehiro Kitayama,Michael Köhl,Henn Korjus,Florian Kraxner,Dmitry Kucher,Diana Laarmann,Mait Lang,Huicui Lu,Natalia V Lukina,Brian S Maitner,Yadvinder Malhi,Eric Marcon,Beatriz Schwantes Marimon,Ben Hur Marimon-Junior,Andrew R Marshall,Emanuel H Martin,Jorge A Meave, Omar Melo-Cruz,Casimiro Mendoza, Irina Mendoza-Polo,Stanislaw Miscicki,Cory Merow,Abel Monteagudo Mendoza,Vanessa S Moreno,Sharif A Mukul,Philip Mundhenk,María Guadalupe Nava-Miranda,David Neill,Victor J Neldner, Radovan V Nevenic,Michael R Ngugi,Pascal A Niklaus,Jacek Oleksyn,Petr Ontikov,Edgar Ortiz-Malavasi,Yude Pan,Alain Paquette, Alexander Parada-Gutierrez, Elena I Parfenova,Minjee Park,Marc Parren,Narayanaswamy Parthasarathy,Pablo L Peri,Sebastian Pfautsch,Nicolas Picard,Maria Teresa F Piedade,Daniel Piotto,Nigel C A Pitman,Axel Dalberg Poulsen,John R Poulsen,Hans Pretzsch,Freddy Ramirez Arevalo, Zorayda Restrepo-Correa,Mirco Rodeghiero,Samir G Rolim,Anand Roopsind,Francesco Rovero,Ervan Rutishauser,Purabi Saikia,Christian Salas-Eljatib,Philippe Saner,Peter Schall,Mart-Jan Schelhaas,Dmitry Schepaschenko,Michael Scherer-Lorenzen,Bernhard Schmid,Jochen Schöngart,Eric B Searle,Vladimír Seben,Josep M Serra-Diaz,Douglas Sheil,Anatoly Z Shvidenko,Javier E Silva-Espejo,Marcos Silveira,James Singh,Plinio Sist,Ferry Slik,Bonaventure Sonké,Alexandre F Souza,Krzysztof J Stereńczak,Jens-Christian Svenning,Miroslav Svoboda, Ben Swanepoel,Natalia Targhetta,Nadja Tchebakova,Hans Ter Steege,Raquel Thomas,Elena Tikhonova,Peter M Umunay,Vladimir A Usoltsev,Renato Valencia,Fernando Valladares,Fons van der Plas,Tran Van Do,Michael E van Nuland, Rodolfo M Vasquez,Hans Verbeeck,Helder Viana,Alexander C Vibrans,Simone Vieira,Klaus von Gadow,Hua-Feng Wang,James V Watson,Gijsbert D A Werner,Susan K Wiser,Florian Wittmann,Hannsjoerg Woell,Verginia Wortel, Roderik Zagt,Tomasz Zawiła-Niedźwiecki,Chunyu Zhang,Xiuhai Zhao,Mo Zhou, Zhi-Xin Zhu,Irie C Zo-Bi, George D Gann,Thomas W Crowther

Nature(2023)

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摘要
Forests are a substantial terrestrial carbon sink, but anthropogenic changes in land use and climate have considerably reduced the scale of this system1. Remote-sensing estimates to quantify carbon losses from global forests2-5 are characterized by considerable uncertainty and we lack a comprehensive ground-sourced evaluation to benchmark these estimates. Here we combine several ground-sourced6 and satellite-derived approaches2,7,8 to evaluate the scale of the global forest carbon potential outside agricultural and urban lands. Despite regional variation, the predictions demonstrated remarkable consistency at a global scale, with only a 12% difference between the ground-sourced and satellite-derived estimates. At present, global forest carbon storage is markedly under the natural potential, with a total deficit of 226 Gt (model range = 151-363 Gt) in areas with low human footprint. Most (61%, 139 Gt C) of this potential is in areas with existing forests, in which ecosystem protection can allow forests to recover to maturity. The remaining 39% (87 Gt C) of potential lies in regions in which forests have been removed or fragmented. Although forests cannot be a substitute for emissions reductions, our results support the idea2,3,9 that the conservation, restoration and sustainable management of diverse forests offer valuable contributions to meeting global climate and biodiversity targets.
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natural forest carbon potential,integrated global assessment
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