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101. | | THIAGO, N. O. S. MARANGONI, B. S. SEGNINI, A. OLIVEIRA, P. P. A.; MILORI, D. M. B. P. Caracterização de cálcio em solo por técnica LIBS. In: SIMPÓSIO NACIONAL DE INSTRUMENTAÇÃO AGROPECUÁRIA, 2014, São Carlos, SP Anais do SIAGRO: ciência, inovação e mercado 2014. São Carlos, SP: Embrapa Instrumentação, 2014. p. 269-272. Editores: Carlos Manoel Pedro Vaz, Débora Marcondes Bastos Pereira Milori, Silvio Crestana. Biblioteca(s): Embrapa Instrumentação; Embrapa Pecuária Sudeste. |
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102. | | PASQUINI NETO, R.; BONANI, W. L.; BOSI, C.; BERNDT, A.; PEZZOPANE, J. R. M.; OLIVEIRA, P. P. A. Forage production in intensive and integrated grazing systems as a strategy to increase the sustainability of beef cattle livestock. In: REUNIÃO ANUAL DA SOCIEDADE BRASILEIRA DE ZOOTECNIA, 56., 2021, Florianópolis. Animal science: challenges in production and sustainability: proceedings... Brasília, DF: Sociedade Brasileira de Zootecnia, 2021. p. 69. Biblioteca(s): Embrapa Pecuária Sudeste. |
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105. | | THIAGO. N. O. de S.; SEGNINI, A.; XAVIER, A. A. P.; OLIVEIRA, P. P. A.; PEREIRA, D. M. B. Evaluation of the stability of soil organic matter in different types of livestock management. In: INTERNATIONAL SYMPOSIUM ON GREENHOUSE GASES IN AGRICULTURE, 2., 2016, Campo Grande, MS. Proceedings... Brasília, DF: Embrapa, 2016. p. 380-384. (Embrapa Gado de Corte. Documentos, 216) Biblioteca(s): Embrapa Pecuária Sudeste. |
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106. | | OLIVEIRA, P. P. A.; RODRIGUES, P. H. M.; PRAES, M. F. F. M.; FERNANDES, F. A.; PEDROSO, A. de F. Estoques de carbono no solo em sistemas pastoris para a produção leiteira. In: SOTTA, E. D.; SAMPAIO, F. G.; COSTA, M. de S. N. (org.). Coletânea de fatores de emissão e remoção de gases de efeito estufa da pecuária brasileira. Brasília, DF: MAPA: SENAR, 2020. p.102-103. Biblioteca(s): Embrapa Pantanal; Embrapa Pecuária Sudeste. |
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107. | | BENTO, L. R.; OLIVEIRA, P. P. A.; BERNARDI, A. C. de C.; MILORI, D. M. B. P.; MARTIN NETO, L. Estoque de carbono e característica estrutural da matéria orgânica do solo em sistemas de produção animal em experimentos de longa duração. In: JORNADA CIENTÍFICA - EMBRAPA SÃO CARLOS, 12., 2020, São Carlos, SP. Anais... São Carlos: Embrapa Instrumentação: Embrapa Pecuária Sudeste, 2020. Editores técnicos: Cristiane Sanchez Farinas, Daniel Souza Corrêa, José Manoel Marconcini, Maria Fernanda Berlingieri Durigan, Paulo Sérgio de Paula Herrmann Junior. 46 Embrapa Instrumentação. Documentos, 71. Biblioteca(s): Embrapa Instrumentação. |
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108. | | BENTO, L. R.; OLIVEIRA, P. P. A.; BERNARDI, A. C. de C.; MILORI, D. M. B. P.; MARTIN NETO, L. Estoque de carbono e característica estrutural da matéria orgânica do solo em sistemas de produção animal em experimentos de longa duração. In: JORNADA CIENTÍFICA DA EMBRAPA SÃO CARLOS, 12., 2020, São Carlos, SP. Anais... São Carlos, SP: Embrapa Instrumentação; Embrapa Pecuária Sudeste, 2020. p.46. (Embrapa Instrumentação. Documentos, 71). Biblioteca(s): Embrapa Pecuária Sudeste. |
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115. | | SILVA, E. T. M. da; OLIVEIRA, P. P. A.; ROCHA, C. O; MACHADO, A; HERLING, V. R.; FERRAZ, M. Seleção de cultivares de alfafa em condições tropicais. In: REUNIÃO ANUAL DA SOCIEDADE BRASILEIRA DE ZOOTECNIA, 43., 2006, João Pessoa. Produção animal em biomas tropicais: anais. João Pessoa: SBZ: UFPB, 2006. 4 f. Biblioteca(s): Embrapa Pecuária Sudeste. |
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116. | | OLIVEIRA, P. P. A.; RODRIGUES, P. H. M.; PRAES, M. F. F. M.; FERNANDES, F. A.; PEDROSO, A. de F. Soil carbon content and stock in tropical pastures in a milk production system. In: INTERNATIONAL SYMPOSIUM ON GREENHOUSE GASES IN AGRICULTURE, 2., 2016, Campo Grande, MS. Proceedings... Brasília, DF: Embrapa, 2016. p. 385-388. (Embrapa Gado de Corte. Documentos, 216). Coordenador Roberto Giolo de Almeida. II SIGEE. Disponível em:... Biblioteca(s): Embrapa Pantanal. |
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117. | | OLIVEIRA, P. P. A.; RODRIGUES, P. H. M.; PRAES, M. F. F. M.; FERNANDES, F. A.; PEDROSO, A. de F. Soil carbon content and stock in tropical pastures in a milk production system. In: INTERNATIONAL SYMPOSIUM ON GREENHOUSE GASES IN AGRICULTURE, 2., 2016, Campo Grande, MS. Proceedings... Brasília, DF: Embrapa, 2016. p. 385-388. (Embrapa Gado de Corte. Documentos, 216) Biblioteca(s): Embrapa Pecuária Sudeste. |
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118. | | BERNARDI, A. C. de C.; BETTIOL, G. M.; OLIVEIRA, P. P. A.; CAMPANA, M.; RABELLO, L. M.; INAMASU, R. Y. Spatial Variability of soil properties in intensively managed tropical grassland in Brazil. In: INTERNATIONAL CONFERENCE ON PRECISION AGRICULTURE, 11., 2012, Mineapolis. Proceedings... Indianapolis: International Society of Precision Agriculture, 2012. Biblioteca(s): Embrapa Pecuária Sudeste. |
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119. | | BERNARDI, A. C. de C.; BETTIOL, G. M.; OLIVEIRA, P. P. A.; CAMPANA, M.; RABELLO, L. M.; INAMASU, R. Y. Spatial variability of soil properties in intensively managed tropical grassland in Brazil. In: INTERNATIONAL CONFERENCE ON PRECISION AGRICULTURE, 11., 2012, Indianapolis. Abstracts... New York: ISPA, 2012. 1 CD-ROM. Biblioteca(s): Embrapa Instrumentação. |
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120. | | ARAUJO, L. C.; SANTOS, P. M.; RODRIGUES, D.; PEZZOPANE, J. R. M.; CRUZ, P. G.; OLIVEIRA, P. P. A. Using agro-climatic models to estimate the Guineagrass potential production in Brazilian tropical Savanna. In: WORLD CONGRESS ON CONSERVATION AGRICULTURE, 5.; FARMING SYSTEMS DESIGN CONFERENCE, 3., 2011, Brisbane, Australia. Proceedings... Brisbane: WCCA: FSD, 2011. p.455-456. Biblioteca(s): Embrapa Pecuária Sudeste. |
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Registros recuperados : 354 | |
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Registro Completo
Biblioteca(s): |
Embrapa Gado de Leite; Embrapa Pecuária Sudeste. |
Data corrente: |
15/08/2021 |
Data da última atualização: |
08/11/2023 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
PEZZOPANE, J. R. M.; BOSI, C.; BERNARDI, A. C. de C.; MULLER, M. D.; OLIVEIRA, P. P. A. |
Afiliação: |
JOSE RICARDO MACEDO PEZZOPANE, CPPSE; CRISTIAM BOSI, CNPQ; ALBERTO CARLOS DE CAMPOS BERNARDI, CPPSE; MARCELO DIAS MULLER, CNPGL; PATRICIA PERONDI ANCHAO OLIVEIRA, CPPSE. |
Título: |
Managing eucalyptus trees in agroforestry systems: productivity parameters and PAR transmittance. |
Ano de publicação: |
2021 |
Fonte/Imprenta: |
Agriculture, Ecosystems and Environment, v.312, jun. 2021, 107350. |
DOI: |
https://doi.org/10.1016/j.agee.2021.107350 |
Idioma: |
Inglês |
Conteúdo: |
Agroforestry systems, in which trees and crops are cultivated in rotation, succession, or association with pastures, are alternatives for the sustainable implementation of agriculture. This study estimated the productive characteristics from eight years old eucalyptus trees in different agroforestry systems and transmission of photosynthetically active solar radiation (PAR). These were composed of a pasture of palisade grass (Urochloa brizantha ?BRS Piat?a?) and eucalyptus trees (Eucalyptus urograndis ?GG100?) planted in April 2011 in single rows 15 m apart with 2 m in-row spacing, totaling 333 trees ha 1. In 2016, half of the trees were thinned, and the spacing was changed to 15 × 4 m. The two systems were then evaluated using an integrated crop-livestock-forestry system (agrosilvopasture with pasture renewal, ICLF) and an integrated livestock-forest system (silvopasture with no pasture renewal, ILF). Each system had 12 paddocks of 5000 m2. In ICLF, pasture was renewed in onethird of each replication of area (two paddocks) per crop year, where the grass was simultaneously sown with corn for silage. Pasture renewal was carried out in the 2013?2014, 2014?2015, 2016?2017, and 2017?2018 growing seasons. Data were collected in April 2016 and June 2019, when 110 trees were harvested to determine wood volume and 28 to gather wood rings and samples of the canopy, roots, and carbon content. These data were used to build the equations for estimating stem volume (m3 tree 1) and tree biomass (kg tree - 1). Stem diameter at breast height (DBH, 1.3 m above the ground) and tree height (H) were measured in 10% of the trees in each plot to estimate stem volume and biomass; these were compared by t-test (5%). PAR was measured continuously from 2013 to 2019 at 70 cm aboveground with linear quantum sensors at the four ICLF positions across the tree line. Using these data, equations for volume = exp[(-10.21 + 1.68 × ln(DBH)+1.29 × ln(H)] and biomass = exp[- 3.88 + 2.41*ln(DBH)+0.62 × ln(H)] were built. The stem volume was greater in ICLF (225.7 m3 ha 1) than in ILF (215.2 m3 ha- 1) (p = 0.0369). The total biomass was 148.3 Mg ha 1 for ICLF and 141.0 Mg ha-1 for ILF, with no significant differences between systems. The agroforestry systems accumulated 64.5 Mg ha 1 of carbon in tree biomass by eight years after system implementation. The basal area of trees in both agroforestry systems showed a strong relationship with the transmission of PAR to the pasture. MenosAgroforestry systems, in which trees and crops are cultivated in rotation, succession, or association with pastures, are alternatives for the sustainable implementation of agriculture. This study estimated the productive characteristics from eight years old eucalyptus trees in different agroforestry systems and transmission of photosynthetically active solar radiation (PAR). These were composed of a pasture of palisade grass (Urochloa brizantha ?BRS Piat?a?) and eucalyptus trees (Eucalyptus urograndis ?GG100?) planted in April 2011 in single rows 15 m apart with 2 m in-row spacing, totaling 333 trees ha 1. In 2016, half of the trees were thinned, and the spacing was changed to 15 × 4 m. The two systems were then evaluated using an integrated crop-livestock-forestry system (agrosilvopasture with pasture renewal, ICLF) and an integrated livestock-forest system (silvopasture with no pasture renewal, ILF). Each system had 12 paddocks of 5000 m2. In ICLF, pasture was renewed in onethird of each replication of area (two paddocks) per crop year, where the grass was simultaneously sown with corn for silage. Pasture renewal was carried out in the 2013?2014, 2014?2015, 2016?2017, and 2017?2018 growing seasons. Data were collected in April 2016 and June 2019, when 110 trees were harvested to determine wood volume and 28 to gather wood rings and samples of the canopy, roots, and carbon content. These data were used to build the equations for estimating stem volume (m3 tree 1) ... Mostrar Tudo |
Palavras-Chave: |
ILPF; Sistema agroflorestal; Sistema ILPF; Stem volume. |
Thesagro: |
Árvore Florestal; Biomassa; Eucalipto. |
Thesaurus NAL: |
Basal area; Biomass; Carbon. |
Categoria do assunto: |
F Plantas e Produtos de Origem Vegetal |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/item/225193/1/ManagingEucalyptusTrees.pdf
|
Marc: |
LEADER 03377naa a2200301 a 4500 001 2133584 005 2023-11-08 008 2021 bl uuuu u00u1 u #d 024 7 $ahttps://doi.org/10.1016/j.agee.2021.107350$2DOI 100 1 $aPEZZOPANE, J. R. M. 245 $aManaging eucalyptus trees in agroforestry systems$bproductivity parameters and PAR transmittance.$h[electronic resource] 260 $c2021 520 $aAgroforestry systems, in which trees and crops are cultivated in rotation, succession, or association with pastures, are alternatives for the sustainable implementation of agriculture. This study estimated the productive characteristics from eight years old eucalyptus trees in different agroforestry systems and transmission of photosynthetically active solar radiation (PAR). These were composed of a pasture of palisade grass (Urochloa brizantha ?BRS Piat?a?) and eucalyptus trees (Eucalyptus urograndis ?GG100?) planted in April 2011 in single rows 15 m apart with 2 m in-row spacing, totaling 333 trees ha 1. In 2016, half of the trees were thinned, and the spacing was changed to 15 × 4 m. The two systems were then evaluated using an integrated crop-livestock-forestry system (agrosilvopasture with pasture renewal, ICLF) and an integrated livestock-forest system (silvopasture with no pasture renewal, ILF). Each system had 12 paddocks of 5000 m2. In ICLF, pasture was renewed in onethird of each replication of area (two paddocks) per crop year, where the grass was simultaneously sown with corn for silage. Pasture renewal was carried out in the 2013?2014, 2014?2015, 2016?2017, and 2017?2018 growing seasons. Data were collected in April 2016 and June 2019, when 110 trees were harvested to determine wood volume and 28 to gather wood rings and samples of the canopy, roots, and carbon content. These data were used to build the equations for estimating stem volume (m3 tree 1) and tree biomass (kg tree - 1). Stem diameter at breast height (DBH, 1.3 m above the ground) and tree height (H) were measured in 10% of the trees in each plot to estimate stem volume and biomass; these were compared by t-test (5%). PAR was measured continuously from 2013 to 2019 at 70 cm aboveground with linear quantum sensors at the four ICLF positions across the tree line. Using these data, equations for volume = exp[(-10.21 + 1.68 × ln(DBH)+1.29 × ln(H)] and biomass = exp[- 3.88 + 2.41*ln(DBH)+0.62 × ln(H)] were built. The stem volume was greater in ICLF (225.7 m3 ha 1) than in ILF (215.2 m3 ha- 1) (p = 0.0369). The total biomass was 148.3 Mg ha 1 for ICLF and 141.0 Mg ha-1 for ILF, with no significant differences between systems. The agroforestry systems accumulated 64.5 Mg ha 1 of carbon in tree biomass by eight years after system implementation. The basal area of trees in both agroforestry systems showed a strong relationship with the transmission of PAR to the pasture. 650 $aBasal area 650 $aBiomass 650 $aCarbon 650 $aÁrvore Florestal 650 $aBiomassa 650 $aEucalipto 653 $aILPF 653 $aSistema agroflorestal 653 $aSistema ILPF 653 $aStem volume 700 1 $aBOSI, C. 700 1 $aBERNARDI, A. C. de C. 700 1 $aMULLER, M. D. 700 1 $aOLIVEIRA, P. P. A. 773 $tAgriculture, Ecosystems and Environment$gv.312, jun. 2021, 107350.
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Embrapa Pecuária Sudeste (CPPSE) |
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