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21. | | MARTINELLI, L. A.; DEVOL, A. H.; FORSBERG, B. R.; VICTORIA, R. L.; RICHEY, J. E.; RIBEIRO, M. N. G. Descarga de solidos dissolvidos totais do Rio Amazonas e seus principais tributarios. Geochim. Brasil., v.3, n.2, p.141-148, 1989. Biblioteca(s): Embrapa Pantanal. |
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23. | | CALHEIROS, D. F.; MOREIRA, M. Z.; MARTINELLI, L. A.; HAMILTON, S. K.; CAMARGO, P. B.; OLIVEIRA, M. D. Composicao isotopica de organismos da cadeia trofica aquatica do Pantanal do Rio Paraguai, MS. In: SIMPOSIO SOBRE RECURSOS NATURAIS E SOCIO-ECONOMICOS DO PANTANAL, 3., 2000, Corumba. Os desafios do novo milenio - resumos. Corumba: Embrapa Pantanal, 2000. p.171-172. Biblioteca(s): Embrapa Pantanal. |
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26. | | SILVA, R. F. B. da; BATISTELLA, M.; MILLINGTON, J. D. A.; MORAN, E.; MARTINELLI, L. A.; DOU, Y.; LIU, J. Three decades of changes in Brazilian municipalities and their food production systems. Land, v. 9, n. 11, p. 1-17, Nov. 2020. Biblioteca(s): Embrapa Agricultura Digital. |
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27. | | VICTORIA, R. L.; MARTINELLI, L. A.; TRIVELIN, P. C. O.; FORSBERG, B. R.; RICHEY, J. E.; DEVOL, A. H. The use of stable isotopes in studies of nutrient cycling: carbon isotope composition of Amazon varzea sediments. Biotropica, v.24, n.2b, p.240-249, 1992. Biblioteca(s): Embrapa Pantanal. |
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28. | | MARTINELLI, L. A.; FERREIRA, J. R.; VICTORIA, R. L.; MORTATTI, J.; FORSBERG, B. R.; BONASSI, J. A.; OLIVEIRA, E.; TANCREDI, A. C. Fluxo de nutrientes em alguns rios do Estado de Rondonia, Bacia do Rio Madeira. Acta Limnologica Brasiliensia, v.2, p.911-930, 1988. Biblioteca(s): Embrapa Pantanal. |
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29. | | FIGUEIRA, A. M. e S.; MARTINELLI, L. A.; DAVIDSON, E.; NARDOTO, G.; ISHIDA, F. Y.; VIEIRA, I.; ALMEIDA, A.; OMETTO, J.-P.; CARVALHO, C. J. R. de. Land use changes in Amazon and its implications to nitrogen cycle: a isotopic approach. In: GLOBAL ENVIRONMENTAL CHANGE: REGIONAL CHALLENGES, 2006, Beijing. Abstracts [...] Beijing: ESSP, 2006. p. 42. Earth System Science Partnership (ESSP) Open Science Conference. Biblioteca(s): Embrapa Amazônia Oriental. |
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30. | | PELLEGRINO, G. Q.; MORAES, J. M. de; GUANDIQUE, M. E. G.; BALLESTER, M. V. R.; VICTORIA, R. L.; MARTINELLI, L. A. Análise espaço-temporal de componentes hidroclimáticos na bacia do rio Piracicaba, SP. Revista Brasileira de Agrometeorologia, Santa Maria, v.9, n.1, p. 125-135, 2001. Biblioteca(s): Embrapa Agricultura Digital. |
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31. | | FIGUEIRA, A. M. e S.; OMETTO, J. P.; NARDOTO, G. B.; VIEIRA, I. C.; CARVALHO, C. J. R. de; DAVIDSON, E. A.; MARTINELLI, L. A. Variações isotópicas de nitrogênio (d15N) em florestas secundárias da Amazônia. In: CONGRESSO DE ESTUDANTES E BOLSISTAS DO EXPERIMENTO LBA, 2., 2005, Manaus. Resumos... [S.l.]: LBA, [2005?]. p. 19. Biblioteca(s): Embrapa Amazônia Oriental. |
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32. | | FERREIRA, A.; PAULA, F. R. de; FERRAZ, S. F. de B.; GERHARD, P.; KASHIWAQUI, E. A. L.; CYRINO, J. E. P.; MARTINELLI, L. A. Riparian coverage affects diets of characids in neotropical streams. Ecology of Freshwater Fish, v. 21, n. 1, p. 12-22, Jan. 2012. Biblioteca(s): Embrapa Amazônia Oriental. |
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33. | | SALATI, E.; VICTORIA, R.; CERRI, C.; VILLA NOVA, N. A.; MARTINELLI, L. A.; MANFRINATO, E. S.; MERLI, G. L.; LASTORIA, A. Problemas ambientais brasileiros Sao Paulo, SP: Fundacao Salim Farah Maluf, 1990 143 p. Biblioteca(s): Embrapa Mandioca e Fruticultura; Embrapa Trigo. |
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36. | | SILVA, A. M. da; NALON, M. A.; KRONKA, F. J. do N.; ALVARES. C. A.; CAMARGO, P. B. de; MARTINELLI, L. A. Historical land cover in different slope and riparian buffer zones in watersheds of the state of São Paulo, Brazil. Scientia Agricola, Piracicaba, v. 64, n. 4, p. 325-335, July/Aug. 2007. Biblioteca(s): Embrapa Florestas. |
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37. | | TELLES, E. de C. C.; CAMARGO, P. B. de; MARTINELLI, L. A.; TRUMBORE, S. E.; COSTA, E. S. da; SANTOS, J.; HIGUCHI, N.; OLIVEIRA JUNIOR, R. C. Influence of soil texture on carbon dynamics and storage potential in tropical forest soils of Amazonia. Global Biogeochemical Cycles, v. 17, n. 2, Jun. 2003. Biblioteca(s): Embrapa Amazônia Oriental. |
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38. | | MARTINEZ, M. G.; CHALKIDIS, H. de M.; OLIVEIRA JUNIOR, R. C. de; MOURÃO, R. H. V.; SILVA, A. M. da; FREITAS NETO, F. A. de; MARTINELLI, L. A.; CAMARGO, P. B. de. Comparações ambientais de Bothrops atrox na Amazônia Oriental. In: SEMINÁRIO DE PESQUISAS CIENTÍFICAS DA FLORESTA NACIONAL DO TAPAJÓS, 2., 2014, Santarém. Anais... Santarém: Instituto Chico Mendes, 2014. p. 66-89. Biblioteca(s): Embrapa Amazônia Oriental. |
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39. | | DAVIDSON, E. A.; CARVALHO, C. J. R. de; FIGUEIRA, A. M.; ISHIDA, F. Y.; OMETTO, J. P. H. B.; NARDOTO, G. B.; SABÁ, R. T.; HAYASHI, S. N.; LEAL, E. C.; VIEIRA, I. C. G.; MARTINELLI, L. A. Recuperation of nitrogen cycling in Amazonian forests following agricultural abandonment. Nature, v. 447, n. 7147, p. 995-998, Jun. 2007. Disponível também on-line. Biblioteca(s): Embrapa Amazônia Oriental. |
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40. | | TELLES, E. de C. C.; CAMARGO, P. B. de; MARTINELLI, L. A.; TRUMBORE, S. E.; COSTA, E. S.; SANTOS, J. dos; HIGUCHI, N.; OLIVEIRA JUNIOR, R. C.; CAMPOS, E. Effect of soil texture on carbon dynamics and storage potential in tropical forest soils of Amazonia. In: CONFERÊNCIA CIENTÍFICA INTERNACIONAL DO LBA, 2., 2002, Manaus, AM. Resumos. Manaus: LBA, 2002. Não paginado. Biblioteca(s): Embrapa Amazônia Oriental. |
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Registros recuperados : 46 | |
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Registro Completo
Biblioteca(s): |
Embrapa Territorial. |
Data corrente: |
05/07/2013 |
Data da última atualização: |
23/01/2014 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
LIU, J.; HULL, V.; BATISTELLA, M.; DEFRIES, R.; DIETZ, T.; FU, F.; HERTEL, T. W.; IZAURRALDE, R. C.; LAMBIN, E. F.; LI, S.; MARTINELLI, L. A.; MCCONNELL, W. J.; MORAN, E. F.; NAYLOR, R.; OUYANG, Z.; POLENSKE, K. R.; REENBERG, A.; ROCHA, G. DE M.; SIMMONS, C. S.; VERBURG, P. H.; VITOUSEK, P. M.; ZHANG, F.; ZHU, C. |
Afiliação: |
JIANGUO LIU, MICHIGAN STATE UNIVERSITY; VANESSA HULL, MICHIGAN STATE UNIVERSITY; MATEUS BATISTELLA, CNPM; RUTH DEFRIES, COLUMBIA UNIVERSITY; THOMAS DIETZ, MICHIGAN STATE UNIVERSITY; FENG FU, MASSACHUSETTS INSTITUTE OF TECHNOLOGY; THOMAS W. HERTEL, PURDUE UNIVERSITY; R. CESAR IZAURRALDE, UNIVERSITY OF MARYLAND; ERIC F. LAMBIN, STANFORD UNIVERSITY; SHUXIN LI, MICHIGAN STATE UNIVERSITY; LUIS A. MARTINELLI, USP; WILLIAM J. MCCONNELL, MICHIGAN STATE UNIVERSITY; EMILIO F. MORAN, MICHIGAN STATE UNIVERSITY; ROSAMOND NAYLOR, STANFORD UNIVERSITY; ZHIYUN OUYANG, CHINESE ACADEMY OF SCIENCES; KAREN R. POLENSKE, MASSACHUSETTS INSTITUTE OF TECHNOLOGY; ANETTE REENBERG, UNIVERSITY COPENHAGEN; GILBERTO DE MIRANDA ROCHA, UNIVERSIDADE FEDERAL DO PARÁ; CYNTHIA S. SIMMONS, MICHIGAN STATE UNIVERSITY; PETER H. VERBURG, INSTITUTE FOR ENVIRONMENTAL STUDIES; PETER M. VITOUSEK, STANFORD UNIVERSITY; FUSUO ZHANG, CHINA AGRICULTURAL UNIVERSITY; CHUNGUAN ZHU, INTERNATIONAL UNION FOR CONSERVATION OF NATURE. |
Título: |
Framing sustainability in a telecoupled world. |
Ano de publicação: |
2013 |
Fonte/Imprenta: |
Ecology and Society, v. 18, n. 2, jun. 2013. |
Páginas: |
19 p. |
DOI: |
http://dx.doi.org/10.5751/ ES-05873-180226 |
Idioma: |
Inglês |
Conteúdo: |
Interactions between distant places are increasingly widespread and influential, often leading to unexpected outcomes with profound implications for sustainability. Numerous sustainability studies have been conducted within a particular place with little attention to the impacts of distant interactions on sustainability in multiple places. although distant forces have been studied, they are usually treated as exogenous variables and feedbacks have rarely been considered. To understand and integrate various distant interactions better, we propose an integrated framework based on telecoupling, an umbrella concept that refers to socioeconomic and environmental interactions over distances. The concept of telecoupling is a logical extension of research on coupled human and natural systems, in which interactions occur within particular geographic locations. The telecoupling framework contains five major interrelated components, i.e., coupled human and natural systems, flows, agents, causes, and effects. We illustrate the framework using two examples of distant interactions associated with trade of agricultural commodities and invasive species, highlight the implications of the framework, and discuss research needs and approaches to move research on telecouplings forward. The framework can help to analyze system components and their interrelationships, identify research gaps, detect hidden costs and untapped benefits, provide a useful means to incorporate feedbacks as well as trade-offs and synergies across multiple systems (sending, receiving, and spillover systems), and improve the understanding of distant interactions and the effectiveness of policies for socioeconomic and environmental sustainability from local to global levels. MenosInteractions between distant places are increasingly widespread and influential, often leading to unexpected outcomes with profound implications for sustainability. Numerous sustainability studies have been conducted within a particular place with little attention to the impacts of distant interactions on sustainability in multiple places. although distant forces have been studied, they are usually treated as exogenous variables and feedbacks have rarely been considered. To understand and integrate various distant interactions better, we propose an integrated framework based on telecoupling, an umbrella concept that refers to socioeconomic and environmental interactions over distances. The concept of telecoupling is a logical extension of research on coupled human and natural systems, in which interactions occur within particular geographic locations. The telecoupling framework contains five major interrelated components, i.e., coupled human and natural systems, flows, agents, causes, and effects. We illustrate the framework using two examples of distant interactions associated with trade of agricultural commodities and invasive species, highlight the implications of the framework, and discuss research needs and approaches to move research on telecouplings forward. The framework can help to analyze system components and their interrelationships, identify research gaps, detect hidden costs and untapped benefits, provide a useful means to incorporate feedbacks as well as trade... Mostrar Tudo |
Palavras-Chave: |
Agents; Causes; Coupled human and natural systems; Coupled human-environment systems; Coupled socialecological systems; Dispersal; Distant interactions; Effects; Feedbacks; Flows; Investment; Knowledge transfer; Migration; Socioeconomic and environmental interactions; Species invasion; Sustainability; Teleconnection; Telecoupling; Transnational land deals; Water transfer. |
Thesaurus NAL: |
Globalization; Technology transfer; Trade. |
Categoria do assunto: |
-- |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/item/85567/1/ES-2013-5873.pdf
|
Marc: |
LEADER 03572naa a2200685 a 4500 001 1961534 005 2014-01-23 008 2013 bl uuuu u00u1 u #d 024 7 $ahttp://dx.doi.org/10.5751/ ES-05873-180226$2DOI 100 1 $aLIU, J. 245 $aFraming sustainability in a telecoupled world.$h[electronic resource] 260 $c2013 300 $a19 p. 520 $aInteractions between distant places are increasingly widespread and influential, often leading to unexpected outcomes with profound implications for sustainability. Numerous sustainability studies have been conducted within a particular place with little attention to the impacts of distant interactions on sustainability in multiple places. although distant forces have been studied, they are usually treated as exogenous variables and feedbacks have rarely been considered. To understand and integrate various distant interactions better, we propose an integrated framework based on telecoupling, an umbrella concept that refers to socioeconomic and environmental interactions over distances. The concept of telecoupling is a logical extension of research on coupled human and natural systems, in which interactions occur within particular geographic locations. The telecoupling framework contains five major interrelated components, i.e., coupled human and natural systems, flows, agents, causes, and effects. We illustrate the framework using two examples of distant interactions associated with trade of agricultural commodities and invasive species, highlight the implications of the framework, and discuss research needs and approaches to move research on telecouplings forward. The framework can help to analyze system components and their interrelationships, identify research gaps, detect hidden costs and untapped benefits, provide a useful means to incorporate feedbacks as well as trade-offs and synergies across multiple systems (sending, receiving, and spillover systems), and improve the understanding of distant interactions and the effectiveness of policies for socioeconomic and environmental sustainability from local to global levels. 650 $aGlobalization 650 $aTechnology transfer 650 $aTrade 653 $aAgents 653 $aCauses 653 $aCoupled human and natural systems 653 $aCoupled human-environment systems 653 $aCoupled socialecological systems 653 $aDispersal 653 $aDistant interactions 653 $aEffects 653 $aFeedbacks 653 $aFlows 653 $aInvestment 653 $aKnowledge transfer 653 $aMigration 653 $aSocioeconomic and environmental interactions 653 $aSpecies invasion 653 $aSustainability 653 $aTeleconnection 653 $aTelecoupling 653 $aTransnational land deals 653 $aWater transfer 700 1 $aHULL, V. 700 1 $aBATISTELLA, M. 700 1 $aDEFRIES, R. 700 1 $aDIETZ, T. 700 1 $aFU, F. 700 1 $aHERTEL, T. W. 700 1 $aIZAURRALDE, R. C. 700 1 $aLAMBIN, E. F. 700 1 $aLI, S. 700 1 $aMARTINELLI, L. A. 700 1 $aMCCONNELL, W. J. 700 1 $aMORAN, E. F. 700 1 $aNAYLOR, R. 700 1 $aOUYANG, Z. 700 1 $aPOLENSKE, K. R. 700 1 $aREENBERG, A. 700 1 $aROCHA, G. DE M. 700 1 $aSIMMONS, C. S. 700 1 $aVERBURG, P. H. 700 1 $aVITOUSEK, P. M. 700 1 $aZHANG, F. 700 1 $aZHU, C. 773 $tEcology and Society$gv. 18, n. 2, jun. 2013.
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