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28. | | CHAPAVAL, L.; SOUZA, G. N. de; MORORÓ, A. M.; VIANA, G. A.; MAGALHÃES, D. C. T.; MIRANDA, K. P. de; AGUIAR, V. M. P.; SOUSA, A. P. B. Instruções para validação e uso do Kit Embrapa de Ordenha Manual® para caprinos leiteiros. Sobral: Embrapa Caprinos e Ovinos, 2009. 7 p. il. color. (Embrapa Caprinos e Ovinos. Comunicado Técnico, 100). Biblioteca(s): Embrapa Caprinos e Ovinos. |
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29. | | NATARELLI, C. V. L.; CLARO, P. I. C.; MIRANDA, K. W. E.; FERREIRA, G. M. D.; OLIVEIRA, J. E.; MARCONCINI, J. M. 2,4 - Dichlorophenoxyacetic acid adsorption on montmorillonite organoclay for controlled release applications. SN Applied Science, n. 1, art. 1212, 2019 13 p. Published online 13 september 2019. Biblioteca(s): Embrapa Instrumentação. |
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33. | | GUIMARÃES JÚNIOR, R.; GONÇALVES, L. C.; PEREIRA, L. G. R.; PIRES, D. A. de A.; RODRIGUES, J. A. S.; MIRANDA, K. L.; ARAÚJO, V. L. de. Balanço do nitrogênio em ovinos alimentados com silagens de três genótipos de milheto. In: REUNIÃO ANUAL DA SOCIEDADE BRASILEIRA DE ZOOTECNIA, 44., 2007, Jaboticabal. Anais... Jaboticabal: Unesp: SBZ, 2007. 1 CD-ROM Biblioteca(s): Embrapa Cerrados. |
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34. | | GUIMARÃES JÚNIOR, R.; GONÇALVES, L. C.; PEREIRA, L. G. R.; PIRES, D. A. de A.; RODRIGUES, J. A. S.; MIRANDA, K. L.; ARAÚJO, V. L. de. Balanço do nitrogênio em ovinos alimentados com silagens de três genótipos de milheto (Pennisetum glaucum (L.). R. Br). In: REUNIÃO ANUAL DA SOCIEDADE BRASILEIRA DE ZOOTECNIA, 44., 2007, Jaboticabal. Anais... Jaboticabal: Unesp: SBZ, 2007. 1 CD-ROM. Biblioteca(s): Embrapa Milho e Sorgo; Embrapa Semiárido. |
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Registro Completo
Biblioteca(s): |
Embrapa Solos. |
Data corrente: |
06/02/2015 |
Data da última atualização: |
16/09/2021 |
Tipo da produção científica: |
Capítulo em Livro Técnico-Científico |
Autoria: |
COUTINHO, H. L. C.; NOELLEMEYER, E.; BALIEIRO, F. de C.; PIÑEIRO, G.; FIDALGO, E. C. C.; MARTIUS, C.; SILVA, C. F. da. |
Afiliação: |
HEITOR LUIZ DA COSTA COUTINHO, CNPS; ELKE NOELLEMEYER, UNIVERSIDAD NACIONAL DE LA PAMPA; FABIANO DE CARVALHO BALIEIRO, CNPS; GERVASIO PIÑEIRO, UNIVERSITY OF BUENOS AIRES; ELAINE CRISTINA CARDOSO FIDALGO, CNPS; CHRISTOPHER MARTIUS, CENTER FOR INTERNATIONAL FORESTRY RESEARCH; CRISTIANE FIGUEIRA DA SILVA, UFRRJ. |
Título: |
Impacts of land-use change on carbon stocks and dynamics in Central-southern South American biomes: Cerrado, Atlantic Forest and Southern Grasslands. |
Ano de publicação: |
2015 |
Fonte/Imprenta: |
In: BANWART, S. A.; NOELLEMEYER, E.; MILNE, E. (ed.). Soil carbon: science, management and policy for multiple benefits. Wallingford, Oxfordshire; Boston, MA: CAB International, 2015. cap. 21, p. 243-264. |
Série: |
(SCOPE series, 71). |
DOI: |
http://dx.doi.org/10.1079/9781780645322.0243 |
Idioma: |
Inglês |
Conteúdo: |
Land-use changes (LUC) are one of most significant global change processes of the current era, with noticeable consequences on habitat loss, due mainly to agricultural expansion and urbanization. The carbon cycle dynamics can be affected significantly by LUC, with impacts on carbon sequestration and emission rates. Considering the direct effect of carbon gases enrichment of the atmosphere on climate change, it is of utmost importance to improve the knowledge base on the impacts of agricultural-based LUC on carbon sinks, such as soils. This chapter reviews the available data on the effects of LUC on soil carbon stocks in three major biomes of the southern portion of the South American continent (the Cerrado, the Southern Grasslands and the Atlantic Forest). The area of soybean crops has expanded almost four times in the La Plata Basin Grasslands of Argentina over the past decade, and near ten times in the Brazilian Cerrado since the mid-1980s. The area under sugarcane crops in Brazil has almost doubled since the mid-1990s, occupying approximately 8.5 million ha (Mha) in 2009. In 2011, forestry plantations occupied 28% more land in Brazil than in 2005, with a total area of 6.5 Mha (75% with Eucalyptus and 25% with Pinus). In general, all conversions of natural vegetation to agricultural land-use systems in the different biomes have resulted in significant losses of soil carbon stocks. The conversion of pastures and grasslands to annual croplands in the Rolling Pampas grasslands has decreased C stocks by 50% over the last century. This represents a much faster loss rate than the loss triggered by the introduction of domestic herbivores over the course of the previous nearly four centuries (22%). These results imply that soil degradation caused by annual crops is very rapid and results in a strong decrease in carbon stocks. However, adopting soil and water conservation management strategies and increasing the complexity of the cropping systems - through adoption of no-tillage (NT) agriculture, well-managed pasture systems, integrated crop-livestock-forestry systems, multiple cropping and crop rotation with legume cover species, for example, can improve soil carbon sequestration rates by up to nearly 2.0 Mg C ha-1 year-1. The elimination of preharvest burning practices in sugarcane crops alone can result in gains of up to 0.93 t C year-1 ha-1. Improving soil and crop management to boost carbon sequestration in agricultural systems, while at the same time increasing resilience by improving soil quality, is a potential climate change mitigation option for farmers in South America. MenosLand-use changes (LUC) are one of most significant global change processes of the current era, with noticeable consequences on habitat loss, due mainly to agricultural expansion and urbanization. The carbon cycle dynamics can be affected significantly by LUC, with impacts on carbon sequestration and emission rates. Considering the direct effect of carbon gases enrichment of the atmosphere on climate change, it is of utmost importance to improve the knowledge base on the impacts of agricultural-based LUC on carbon sinks, such as soils. This chapter reviews the available data on the effects of LUC on soil carbon stocks in three major biomes of the southern portion of the South American continent (the Cerrado, the Southern Grasslands and the Atlantic Forest). The area of soybean crops has expanded almost four times in the La Plata Basin Grasslands of Argentina over the past decade, and near ten times in the Brazilian Cerrado since the mid-1980s. The area under sugarcane crops in Brazil has almost doubled since the mid-1990s, occupying approximately 8.5 million ha (Mha) in 2009. In 2011, forestry plantations occupied 28% more land in Brazil than in 2005, with a total area of 6.5 Mha (75% with Eucalyptus and 25% with Pinus). In general, all conversions of natural vegetation to agricultural land-use systems in the different biomes have resulted in significant losses of soil carbon stocks. The conversion of pastures and grasslands to annual croplands in the Rolling Pampas grassland... Mostrar Tudo |
Palavras-Chave: |
Campos sulinos; Estoque de carbono; Mata Atlântica. |
Thesagro: |
Cerrado; Uso da terra. |
Thesaurus NAL: |
Carbon sinks; Land use change. |
Categoria do assunto: |
P Recursos Naturais, Ciências Ambientais e da Terra |
Marc: |
LEADER 03729naa a2200301 a 4500 001 2007941 005 2021-09-16 008 2015 bl uuuu u00u1 u #d 024 7 $ahttp://dx.doi.org/10.1079/9781780645322.0243$2DOI 100 1 $aCOUTINHO, H. L. C. 245 $aImpacts of land-use change on carbon stocks and dynamics in Central-southern South American biomes$bCerrado, Atlantic Forest and Southern Grasslands.$h[electronic resource] 260 $c2015 490 $a(SCOPE series, 71). 520 $aLand-use changes (LUC) are one of most significant global change processes of the current era, with noticeable consequences on habitat loss, due mainly to agricultural expansion and urbanization. The carbon cycle dynamics can be affected significantly by LUC, with impacts on carbon sequestration and emission rates. Considering the direct effect of carbon gases enrichment of the atmosphere on climate change, it is of utmost importance to improve the knowledge base on the impacts of agricultural-based LUC on carbon sinks, such as soils. This chapter reviews the available data on the effects of LUC on soil carbon stocks in three major biomes of the southern portion of the South American continent (the Cerrado, the Southern Grasslands and the Atlantic Forest). The area of soybean crops has expanded almost four times in the La Plata Basin Grasslands of Argentina over the past decade, and near ten times in the Brazilian Cerrado since the mid-1980s. The area under sugarcane crops in Brazil has almost doubled since the mid-1990s, occupying approximately 8.5 million ha (Mha) in 2009. In 2011, forestry plantations occupied 28% more land in Brazil than in 2005, with a total area of 6.5 Mha (75% with Eucalyptus and 25% with Pinus). In general, all conversions of natural vegetation to agricultural land-use systems in the different biomes have resulted in significant losses of soil carbon stocks. The conversion of pastures and grasslands to annual croplands in the Rolling Pampas grasslands has decreased C stocks by 50% over the last century. This represents a much faster loss rate than the loss triggered by the introduction of domestic herbivores over the course of the previous nearly four centuries (22%). These results imply that soil degradation caused by annual crops is very rapid and results in a strong decrease in carbon stocks. However, adopting soil and water conservation management strategies and increasing the complexity of the cropping systems - through adoption of no-tillage (NT) agriculture, well-managed pasture systems, integrated crop-livestock-forestry systems, multiple cropping and crop rotation with legume cover species, for example, can improve soil carbon sequestration rates by up to nearly 2.0 Mg C ha-1 year-1. The elimination of preharvest burning practices in sugarcane crops alone can result in gains of up to 0.93 t C year-1 ha-1. Improving soil and crop management to boost carbon sequestration in agricultural systems, while at the same time increasing resilience by improving soil quality, is a potential climate change mitigation option for farmers in South America. 650 $aCarbon sinks 650 $aLand use change 650 $aCerrado 650 $aUso da terra 653 $aCampos sulinos 653 $aEstoque de carbono 653 $aMata Atlântica 700 1 $aNOELLEMEYER, E. 700 1 $aBALIEIRO, F. de C. 700 1 $aPIÑEIRO, G. 700 1 $aFIDALGO, E. C. C. 700 1 $aMARTIUS, C. 700 1 $aSILVA, C. F. da 773 $tIn: BANWART, S. A.; NOELLEMEYER, E.; MILNE, E. (ed.). Soil carbon: science, management and policy for multiple benefits. Wallingford, Oxfordshire; Boston, MA: CAB International, 2015. cap. 21, p. 243-264.
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