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Carbon recovery dynamics following disturbance by selective logging in Amazonian forests

When 2 Mha of Amazonian forests are disturbed by selective logging each year, more than 90 Tg of carbon (C) is emitted to the atmosphere. Emissions are then counterbalanced by forest regrowth. With an original modelling approach, calibrated on a network of 133 permanent forest plots (175 ha total) a...

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Autores principales: Piponiot, Camille, Sist, Plinio, Mazzei, Lucas, Peña-Claros, Marielos, Putz, Francis E, Rutishauser, Ervan, Shenkin, Alexander, Ascarrunz, Nataly, de Azevedo, Celso P, Baraloto, Christopher, França, Mabiane, Guedes, Marcelino, Honorio Coronado, Eurídice N, d'Oliveira, Marcus VN, Ruschel, Ademir R, da Silva, Kátia E, Doff Sotta, Eleneide, de Souza, Cintia R, Vidal, Edson, West, Thales AP, Hérault, Bruno
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5217754/
https://www.ncbi.nlm.nih.gov/pubmed/27993185
http://dx.doi.org/10.7554/eLife.21394
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author Piponiot, Camille
Sist, Plinio
Mazzei, Lucas
Peña-Claros, Marielos
Putz, Francis E
Rutishauser, Ervan
Shenkin, Alexander
Ascarrunz, Nataly
de Azevedo, Celso P
Baraloto, Christopher
França, Mabiane
Guedes, Marcelino
Honorio Coronado, Eurídice N
d'Oliveira, Marcus VN
Ruschel, Ademir R
da Silva, Kátia E
Doff Sotta, Eleneide
de Souza, Cintia R
Vidal, Edson
West, Thales AP
Hérault, Bruno
author_facet Piponiot, Camille
Sist, Plinio
Mazzei, Lucas
Peña-Claros, Marielos
Putz, Francis E
Rutishauser, Ervan
Shenkin, Alexander
Ascarrunz, Nataly
de Azevedo, Celso P
Baraloto, Christopher
França, Mabiane
Guedes, Marcelino
Honorio Coronado, Eurídice N
d'Oliveira, Marcus VN
Ruschel, Ademir R
da Silva, Kátia E
Doff Sotta, Eleneide
de Souza, Cintia R
Vidal, Edson
West, Thales AP
Hérault, Bruno
author_sort Piponiot, Camille
collection PubMed
description When 2 Mha of Amazonian forests are disturbed by selective logging each year, more than 90 Tg of carbon (C) is emitted to the atmosphere. Emissions are then counterbalanced by forest regrowth. With an original modelling approach, calibrated on a network of 133 permanent forest plots (175 ha total) across Amazonia, we link regional differences in climate, soil and initial biomass with survivors’ and recruits’ C fluxes to provide Amazon-wide predictions of post-logging C recovery. We show that net aboveground C recovery over 10 years is higher in the Guiana Shield and in the west (21 [Formula: see text] 3 Mg C ha [Formula: see text]) than in the south (12 [Formula: see text] 3 Mg C ha [Formula: see text]) where environmental stress is high (low rainfall, high seasonality). We highlight the key role of survivors in the forest regrowth and elaborate a comprehensive map of post-disturbance C recovery potential in Amazonia. DOI: http://dx.doi.org/10.7554/eLife.21394.001
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spelling pubmed-52177542017-01-09 Carbon recovery dynamics following disturbance by selective logging in Amazonian forests Piponiot, Camille Sist, Plinio Mazzei, Lucas Peña-Claros, Marielos Putz, Francis E Rutishauser, Ervan Shenkin, Alexander Ascarrunz, Nataly de Azevedo, Celso P Baraloto, Christopher França, Mabiane Guedes, Marcelino Honorio Coronado, Eurídice N d'Oliveira, Marcus VN Ruschel, Ademir R da Silva, Kátia E Doff Sotta, Eleneide de Souza, Cintia R Vidal, Edson West, Thales AP Hérault, Bruno eLife Ecology When 2 Mha of Amazonian forests are disturbed by selective logging each year, more than 90 Tg of carbon (C) is emitted to the atmosphere. Emissions are then counterbalanced by forest regrowth. With an original modelling approach, calibrated on a network of 133 permanent forest plots (175 ha total) across Amazonia, we link regional differences in climate, soil and initial biomass with survivors’ and recruits’ C fluxes to provide Amazon-wide predictions of post-logging C recovery. We show that net aboveground C recovery over 10 years is higher in the Guiana Shield and in the west (21 [Formula: see text] 3 Mg C ha [Formula: see text]) than in the south (12 [Formula: see text] 3 Mg C ha [Formula: see text]) where environmental stress is high (low rainfall, high seasonality). We highlight the key role of survivors in the forest regrowth and elaborate a comprehensive map of post-disturbance C recovery potential in Amazonia. DOI: http://dx.doi.org/10.7554/eLife.21394.001 eLife Sciences Publications, Ltd 2016-12-20 /pmc/articles/PMC5217754/ /pubmed/27993185 http://dx.doi.org/10.7554/eLife.21394 Text en © 2016, Piponiot et al http://creativecommons.org/licenses/by/4.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Ecology
Piponiot, Camille
Sist, Plinio
Mazzei, Lucas
Peña-Claros, Marielos
Putz, Francis E
Rutishauser, Ervan
Shenkin, Alexander
Ascarrunz, Nataly
de Azevedo, Celso P
Baraloto, Christopher
França, Mabiane
Guedes, Marcelino
Honorio Coronado, Eurídice N
d'Oliveira, Marcus VN
Ruschel, Ademir R
da Silva, Kátia E
Doff Sotta, Eleneide
de Souza, Cintia R
Vidal, Edson
West, Thales AP
Hérault, Bruno
Carbon recovery dynamics following disturbance by selective logging in Amazonian forests
title Carbon recovery dynamics following disturbance by selective logging in Amazonian forests
title_full Carbon recovery dynamics following disturbance by selective logging in Amazonian forests
title_fullStr Carbon recovery dynamics following disturbance by selective logging in Amazonian forests
title_full_unstemmed Carbon recovery dynamics following disturbance by selective logging in Amazonian forests
title_short Carbon recovery dynamics following disturbance by selective logging in Amazonian forests
title_sort carbon recovery dynamics following disturbance by selective logging in amazonian forests
topic Ecology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5217754/
https://www.ncbi.nlm.nih.gov/pubmed/27993185
http://dx.doi.org/10.7554/eLife.21394
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