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13. | | HERRERO-JÁUREGUI, C.; SIST, P.; VINSON, C.; MARTINS-DA-SILVA, R. C. V.; KANASHIRO, M. Impacto da exploração na dinâmica de regeneração de duas espécies de uso múltiplo: cumaru (Dipteryx odorata (Aubl.) Willd.) e copaíba (Copaifera reticulata Ducke) In: CRUZ, H.; SABLAYROLLES, P.; KANASHIRO, M.; AMARAL, M.; SIST, P. (Org.). Relação empresa/comunidade no contexto do manejo florestal comunitário e familiar: uma contribuição do projeto Floresta em pé. Belém, PA: IBAMA, 2011. p. 95-120. Biblioteca(s): Embrapa Amazônia Oriental. |
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15. | | SIST, P.; MAZZEI, L.; BLANC, L.; RUSCHEL, A.; ROSSI, V.; KANASHIRO, M. Long term Impact of logging on carbon storage and tree diversity in the Amazon Basin. In: ANNUAL MEETING OF THE ASSOCIATION FOR TROPICAL BIOLOGY AND CONSERVATION, 49., 2012, Bonito. Ecology, evolution and sustainable use of tropical biodiversity. [S.l.]: ATBC, 2012. p. 980. Na publicação: KANSHIRO M. Biblioteca(s): Embrapa Amazônia Oriental. |
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Registro Completo
Biblioteca(s): |
Embrapa Amazônia Oriental. |
Data corrente: |
18/08/2016 |
Data da última atualização: |
24/05/2022 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
B - 2 |
Autoria: |
PIPONIOT, C.; CABON, A.; DESCROIX, L.; DOURDAIN, A.; MAZZEI, L.; OULIAC, B.; RUTISHAUSER, E.; SIST, P.; HÉRAULT, B. |
Afiliação: |
Camille Piponiot, Université de la Guyane; Antoine Cabon, Centre Tecnològic Forestal de Catalunya; Laurent Descroix, ONF-Guyane, Réserve de Montabo; Aurélie Dourdain, CIRAD; LUCAS JOSE MAZZEI DE FREITAS, CPATU; Benjamin Ouliac, Guyane Energie Climat; Ervan Rutishauser, CarboForExpert; Plinio Sist, CIRAD; Bruno Hérault, CIRAD. |
Título: |
A methodological framework to assess the carbon balance of tropical managed forests. |
Ano de publicação: |
2016 |
Fonte/Imprenta: |
Carbon Balance and Management, v. 11, n. 1, Dec. 2016. |
DOI: |
10.1186/s13021-016-0056-7 |
Idioma: |
Inglês |
Conteúdo: |
Background: Managed forests are a major component of tropical landscapes. Production forests as designated by national forest services cover up to 400 million ha, i.e. half of the forested area in the humid tropics. Forest management thus plays a major role in the global carbon budget, but with a lack of unified method to estimate carbon fluxes from tropical managed forests. In this study we propose a new time- and spatially-explicit methodology to estimate the above-ground carbon budget of selective logging at regional scale. Results: The yearly balance of a logging unit, i.e. the elementary management unit of a forest estate, is modelled by aggregating three sub-models encompassing (i) emissions from extracted wood, (ii) emissions from logging damage and deforested areas and (iii) carbon storage from post-logging recovery. Models are parametrised and uncertainties are propagated through a MCMC algorithm. As a case study, we used 38 years of National Forest Inventories in French Guiana, northeastern Amazonia, to estimate the above-ground carbon balance (i.e. the net carbon exchange with the atmosphere) of selectively logged forests. Over this period, the net carbon balance of selective logging in the French Guianan Permanent Forest Estate is estimated to be comprised between 0.12 and 1.33 Tg C, with a median value of 0.64 Tg C. Uncertainties over the model could be diminished by improving the accuracy of both logging damage and large woody necromass decay submodels. Conclusions: We propose an innovating carbon accounting framework relying upon basic logging statistics. This flexible tool allows carbon budget of tropical managed forests to be estimated in a wide range of tropical regions MenosBackground: Managed forests are a major component of tropical landscapes. Production forests as designated by national forest services cover up to 400 million ha, i.e. half of the forested area in the humid tropics. Forest management thus plays a major role in the global carbon budget, but with a lack of unified method to estimate carbon fluxes from tropical managed forests. In this study we propose a new time- and spatially-explicit methodology to estimate the above-ground carbon budget of selective logging at regional scale. Results: The yearly balance of a logging unit, i.e. the elementary management unit of a forest estate, is modelled by aggregating three sub-models encompassing (i) emissions from extracted wood, (ii) emissions from logging damage and deforested areas and (iii) carbon storage from post-logging recovery. Models are parametrised and uncertainties are propagated through a MCMC algorithm. As a case study, we used 38 years of National Forest Inventories in French Guiana, northeastern Amazonia, to estimate the above-ground carbon balance (i.e. the net carbon exchange with the atmosphere) of selectively logged forests. Over this period, the net carbon balance of selective logging in the French Guianan Permanent Forest Estate is estimated to be comprised between 0.12 and 1.33 Tg C, with a median value of 0.64 Tg C. Uncertainties over the model could be diminished by improving the accuracy of both logging damage and large woody necromass decay submodels. Conclus... Mostrar Tudo |
Palavras-Chave: |
Ciclo do carbono; Error propagation; Production forests; Selective logging. |
Thesagro: |
Floresta. |
Thesaurus NAL: |
Amazonia; carbon cycle. |
Categoria do assunto: |
K Ciência Florestal e Produtos de Origem Vegetal |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/item/146542/1/10.1186-s13021-016-0056-7.pdf
|
Marc: |
LEADER 02586naa a2200313 a 4500 001 2051226 005 2022-05-24 008 2016 bl uuuu u00u1 u #d 024 7 $a10.1186/s13021-016-0056-7$2DOI 100 1 $aPIPONIOT, C. 245 $aA methodological framework to assess the carbon balance of tropical managed forests.$h[electronic resource] 260 $c2016 520 $aBackground: Managed forests are a major component of tropical landscapes. Production forests as designated by national forest services cover up to 400 million ha, i.e. half of the forested area in the humid tropics. Forest management thus plays a major role in the global carbon budget, but with a lack of unified method to estimate carbon fluxes from tropical managed forests. In this study we propose a new time- and spatially-explicit methodology to estimate the above-ground carbon budget of selective logging at regional scale. Results: The yearly balance of a logging unit, i.e. the elementary management unit of a forest estate, is modelled by aggregating three sub-models encompassing (i) emissions from extracted wood, (ii) emissions from logging damage and deforested areas and (iii) carbon storage from post-logging recovery. Models are parametrised and uncertainties are propagated through a MCMC algorithm. As a case study, we used 38 years of National Forest Inventories in French Guiana, northeastern Amazonia, to estimate the above-ground carbon balance (i.e. the net carbon exchange with the atmosphere) of selectively logged forests. Over this period, the net carbon balance of selective logging in the French Guianan Permanent Forest Estate is estimated to be comprised between 0.12 and 1.33 Tg C, with a median value of 0.64 Tg C. Uncertainties over the model could be diminished by improving the accuracy of both logging damage and large woody necromass decay submodels. Conclusions: We propose an innovating carbon accounting framework relying upon basic logging statistics. This flexible tool allows carbon budget of tropical managed forests to be estimated in a wide range of tropical regions 650 $aAmazonia 650 $acarbon cycle 650 $aFloresta 653 $aCiclo do carbono 653 $aError propagation 653 $aProduction forests 653 $aSelective logging 700 1 $aCABON, A. 700 1 $aDESCROIX, L. 700 1 $aDOURDAIN, A. 700 1 $aMAZZEI, L. 700 1 $aOULIAC, B. 700 1 $aRUTISHAUSER, E. 700 1 $aSIST, P. 700 1 $aHÉRAULT, B. 773 $tCarbon Balance and Management$gv. 11, n. 1, Dec. 2016.
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Embrapa Amazônia Oriental (CPATU) |
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