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Название: Integrated global assessment of the natural forest carbon potential
Авторы: Mo, L.
Zohner, C. M.
Reich, P. B.
Liang, J.
de, Miguel, S.
Nabuurs, G. -J.
Renner, S. S.
van, den, Hoogen, J.
Araza, A.
Herold, M.
Mirzagholi, L.
Ma, H.
Averill, C.
Phillips, O. L.
Gamarra, J. G. P.
Hordijk, I.
Routh, D.
Abegg, M.
Adou, Yao, Y. C.
Alberti, G.
Almeyda, Zambrano, A. M.
Alvarado, B. V.
Alvarez-Dávila, E.
Alvarez-Loayza, P.
Alves, L. F.
Amaral, I.
Ammer, C.
Antón-Fernández, C.
Araujo-Murakami, A.
Arroyo, L.
Avitabile, V.
Aymard, G. A.
Baker, T. R.
Bałazy, R.
Banki, O.
Barroso, J. G.
Bastian, M. L.
Bastin, J. -F.
Birigazzi, L.
Birnbaum, P.
Bitariho, R.
Boeckx, P.
Bongers, F.
Bouriaud, O.
Brancalion, P. H. S.
Brandl, S.
Brearley, F. Q.
Brienen, R.
Broadbent, E. N.
Bruelheide, H.
Bussotti, F.
Cazzolla, Gatti, R.
César, R. G.
Cesljar, G.
Chazdon, R. L.
Chen, H. Y. H.
Chisholm, C.
Cho, H.
Cienciala, E.
Clark, C.
Clark, D.
Colletta, G. D.
Coomes, D. A.
Cornejo, Valverde, F.
Corral-Rivas, J. J.
Crim, P. M.
Cumming, J. R.
Dayanandan, S.
de, Gasper, A. L.
Decuyper, M.
Derroire, G.
DeVries, B.
Djordjevic, I.
Dolezal, J.
Dourdain, A.
Engone, Obiang, N. L.
Enquist, B. J.
Eyre, T. J.
Fandohan, A. B.
Fayle, T. M.
Feldpausch, T. R.
Ferreira, L. V.
Finér, L.
Fischer, M.
Fletcher, C.
Frizzera, L.
Gianelle, D.
Glick, H. B.
Harris, D. J.
Hector, A.
Hemp, A.
Hengeveld, G.
Hérault, B.
Herbohn, J. L.
Hillers, A.
Honorio, Coronado, E. N.
Hui, C.
Ibanez, T.
Imai, N.
Jagodziński, A. M.
Jaroszewicz, B.
Johannsen, V. K.
Joly, C. A.
Jucker, T.
Jung, I.
Karminov, V.
Kartawinata, K.
Kearsley, E.
Kenfack, D.
Kennard, D. K.
Kepfer-Rojas, S.
Keppel, G.
Khan, M. L.
Killeen, T. J.
Kim, H. S.
Kitayama, K.
Köhl, M.
Korjus, H.
Kraxner, F.
Kucher, D.
Laarmann, D.
Lang, M.
Lu, H.
Lukina, N. V.
Maitner, B. S.
Malhi, Y.
Marcon, E.
Marimon, B. S.
Marimon-Junior, B. H.
Marshall, A. R.
Martin, E. H.
Meave, J. A.
Melo-Cruz, O.
Mendoza, C.
Mendoza-Polo, I.
Miscicki, S.
Merow, C.
Monteagudo, Mendoza, A.
Moreno, V. S.
Mukul, S. A.
Mundhenk, P.
Nava-Miranda, M. G.
Neill, D.
Neldner, V. J.
Nevenic, R. V.
Ngugi, M. R.
Niklaus, P. A.
Oleksyn, J.
Ontikov, P.
Ortiz-Malavasi, E.
Pan, Y.
Paquette, A.
Parada-Gutierrez, A.
Parfenova, E. I.
Park, M.
Parren, M.
Parthasarathy, N.
Peri, P. L.
Pfautsch, S.
Picard, N.
Piedade, M. T. F.
Piotto, D.
Pitman, N. C. A.
Poulsen, A. D.
Poulsen, J. R.
Pretzsch, H.
Ramirez, Arevalo, F.
Restrepo-Correa, Z.
Rodeghiero, M.
Rolim, S. G.
Roopsind, A.
Rovero, F.
Rutishauser, E.
Saikia, P.
Salas-Eljatib, C.
Saner, P.
Schall, P.
Schelhaas, M. -J.
Schepaschenko, D.
Scherer-Lorenzen, M.
Schmid, B.
Schöngart, J.
Searle, E. B.
Seben, V.
Serra-Diaz, J. M.
Sheil, D.
Shvidenko, A. Z.
Silva-Espejo, J. E.
Silveira, M.
Singh, J.
Sist, P.
Slik, F.
Sonké, B.
Souza, A. F.
Stereńczak, K. J.
Svenning, J. -C.
Svoboda, M.
Swanepoel, B.
Targhetta, N.
Tchebakova, N.
ter, Steege, H.
Thomas, R.
Tikhonova, E.
Umunay, P. M.
Usoltsev, V. A.
Valencia, R.
Valladares, F.
van, der, Plas, F.
Van, Do, T.
van, Nuland, M. E.
Vasquez, R. M.
Verbeeck, H.
Viana, H.
Vibrans, A. C.
Vieira, S.
von, Gadow, K.
Wang, H. -F.
Watson, J. V.
Werner, G. D. A.
Wiser, S. K.
Wittmann, F.
Woell, H.
Wortel, V.
Zagt, R.
Zawiła-Niedźwiecki, T.
Zhang, C.
Zhao, X.
Zhou, M.
Zhu, Z. -X.
Zo-Bi, I. C.
Gann, G. D.
Crowther, T. W.
Дата публикации: 2023
Издатель: Nature Research
Библиографическое описание: Integrated global assessment of the natural forest carbon potential / L. Mo, C. M. Zohner, P. B. Reich [et al.] // Nature. – 2023. – Vol. 624. – Iss. 7990. – P. 92-101. DOI: 10.1038/s41586-023-06723-z.
Аннотация: 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. © 2023, The Author(s).
Ключевые слова: ASSESSMENT METHOD
BIODIVERSITY
CARBON EMISSION
CARBON STORAGE
EMISSION CONTROL
ENVIRONMENTAL PROTECTION
GLOBAL CLIMATE
ARTICLE
BIODIVERSITY
BIOMASS
CARBON CYCLING
CARBON STORAGE
CLIMATE CHANGE
ECOSYSTEM RESTORATION
ENVIRONMENTAL MONITORING
ENVIRONMENTAL PROTECTION
ENVIRONMENTAL SUSTAINABILITY
FOREST
HUMAN IMPACT (ENVIRONMENT)
LAND USE
NONHUMAN
REMOTE SENSING
URBAN AREA
CARBON SEQUESTRATION
ECOSYSTEM
FOREST
HUMAN
PROCEDURES
CARBON
BIODIVERSITY
CARBON
CARBON SEQUESTRATION
CONSERVATION OF NATURAL RESOURCES
ECOSYSTEM
FORESTS
HUMANS
URI: https://elar.usfeu.ru/handle/123456789/13180
DOI: 10.1038/s41586-023-06723-z
SCOPUS: 2-s2.0-85176940311
WoS: WOS:001102765700001
Располагается в коллекциях:Научные публикации, проиндексированные в SCOPUS и WoS CC

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