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Registro Completo |
Biblioteca(s): |
Embrapa Meio Ambiente. |
Data corrente: |
15/12/2009 |
Data da última atualização: |
27/05/2016 |
Tipo da produção científica: |
Artigo em Anais de Congresso |
Autoria: |
BOLONHEZI, D.; ABREU, M. F.; MUTTON, M. A.; JUSTO, C. L.; MARTINS, A. M. L; GODOY, I. J.; CERDEIRA, A. L. |
Afiliação: |
DENIZART BOLONHEZI, IAC; MÔNICA F. ABREU, IAC; MIGUEL A. MUTTON, FCA/UNESP; CÉLIO L. JUSTO, Instituto de Zootecnia; ANTONIO M. L. MARTINS, IAC; IGNÁCIO J. GODOY, IAC; ANTONIO LUIZ CERDEIRA, CNPMA. |
Título: |
Nutrient content in aboveground biomass of Brazilian peanut cultivars in conservation tillage on sugarcane straw and pasture area. |
Ano de publicação: |
2009 |
Fonte/Imprenta: |
In: INTERNATIONAL PLANT NUTRITION COLLOQUIUM, 16., 2009, Sacramento, California. Proceedings... Davis: University of California, 2009. |
Idioma: |
Inglês |
Conteúdo: |
Fields studies were conducted in 2004/2005 in order to evaluate the effects of tillage on nutrient content in aboveground biomass of two peanut cultivars, cultivated in rotation after mechanical harvested sugarcane and pastures. These trials were carried out in two types of soils; Oxisol and Ultisol, respectively in Ribeir?ao Preto and Mirassol, S?ao Paulo State, Brazil. The experimental design was split-plot with four replications. Tillage treatments (conventional, minimum and no-tillage) were main plots while sub-plots were peanut genotypes IAC-Tatu ST (Valencia market-type, erect growth habit, red seed coat, maturity range around 100 days after planting) and IAC-Caiap´o (Runner market-type, prostate growth habit, pink testa, maturity range more than 135 days). From 15 to 90 days after emergence, samples of leaves and stems were harvested, dried, weighted and ground to determine macro and micronutrient concentration. At 75 days after sowing, the cultivar IAC-Caiap´o showed higher contents of N, P, K, Cu, and Zn while IAC-Tatu presented higher concentrations of Ca, Mg, and S. Zn content was higher in conservation tillage than in conventional, mainly in Oxisoil for both of cultivars. |
Thesagro: |
Amendoim; Cana de açúcar; Pastagem. |
Categoria do assunto: |
P Recursos Naturais, Ciências Ambientais e da Terra |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/item/143476/1/2009AA-067.pdf
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Marc: |
LEADER 01964nam a2200217 a 4500 001 1578026 005 2016-05-27 008 2009 bl uuuu u00u1 u #d 100 1 $aBOLONHEZI, D. 245 $aNutrient content in aboveground biomass of Brazilian peanut cultivars in conservation tillage on sugarcane straw and pasture area.$h[electronic resource] 260 $aIn: INTERNATIONAL PLANT NUTRITION COLLOQUIUM, 16., 2009, Sacramento, California. Proceedings... Davis: University of California$c2009 520 $aFields studies were conducted in 2004/2005 in order to evaluate the effects of tillage on nutrient content in aboveground biomass of two peanut cultivars, cultivated in rotation after mechanical harvested sugarcane and pastures. These trials were carried out in two types of soils; Oxisol and Ultisol, respectively in Ribeir?ao Preto and Mirassol, S?ao Paulo State, Brazil. The experimental design was split-plot with four replications. Tillage treatments (conventional, minimum and no-tillage) were main plots while sub-plots were peanut genotypes IAC-Tatu ST (Valencia market-type, erect growth habit, red seed coat, maturity range around 100 days after planting) and IAC-Caiap´o (Runner market-type, prostate growth habit, pink testa, maturity range more than 135 days). From 15 to 90 days after emergence, samples of leaves and stems were harvested, dried, weighted and ground to determine macro and micronutrient concentration. At 75 days after sowing, the cultivar IAC-Caiap´o showed higher contents of N, P, K, Cu, and Zn while IAC-Tatu presented higher concentrations of Ca, Mg, and S. Zn content was higher in conservation tillage than in conventional, mainly in Oxisoil for both of cultivars. 650 $aAmendoim 650 $aCana de açúcar 650 $aPastagem 700 1 $aABREU, M. F. 700 1 $aMUTTON, M. A. 700 1 $aJUSTO, C. L. 700 1 $aMARTINS, A. M. L 700 1 $aGODOY, I. J. 700 1 $aCERDEIRA, A. L.
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Embrapa Meio Ambiente (CNPMA) |
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Registro Completo
Biblioteca(s): |
Embrapa Acre; Embrapa Agricultura Digital; Embrapa Agroindústria Tropical; Embrapa Agropecuária Oeste; Embrapa Agrossilvipastoril; Embrapa Amapá; Embrapa Amazônia Ocidental; Embrapa Amazônia Oriental; Embrapa Arroz e Feijão; Embrapa Cerrados; Embrapa Clima Temperado; Embrapa Cocais; Embrapa Florestas; Embrapa Mandioca e Fruticultura; Embrapa Meio Ambiente; Embrapa Meio-Norte; Embrapa Milho e Sorgo; Embrapa Pantanal; Embrapa Pecuária Sudeste; Embrapa Pesca e Aquicultura; Embrapa Rondônia; Embrapa Roraima; Embrapa Semiárido; Embrapa Soja; Embrapa Solos; Embrapa Trigo; Embrapa Uva e Vinho. MenosEmbrapa Acre; Embrapa Agricultura Digital; Embrapa Agroindústria Tropical; Embrapa Agropecuária Oeste; Embrapa Agrossilvipastoril; Embrapa Amapá; Embrapa Amazônia Ocidental; Embrapa Amazônia Oriental; Embrapa Arroz e Feijão; Embrapa Cerrados... Mostrar Todas |
Data corrente: |
09/11/2021 |
Data da última atualização: |
20/12/2021 |
Tipo da produção científica: |
Capítulo em Livro Técnico-Científico |
Autoria: |
MONTEIRO, J. E. B. de A.; COSTA, F. de S.; BEZERRA, M. A.; COMUNELLO, E.; ZOLIN, C. A.; PEREIRA, J. R.; MELEM JUNIOR, N. J.; ANTONIO, I. C.; SANTIAGO, A. V.; SILVA, S. C. da; SILVA, F. A. M. da; STEINMETZ, S.; KLEPKER, D.; COELHO FILHO, M. A.; CABRAL, O. M. R.; ANDRADE JUNIOR, A. S. de; GUIMARAES, D. P.; SORIANO, B. M. A.; PEZZOPANE, J. R. M.; EVANGELISTA, B. A.; ALVES, A. B.; MOURA, M. S. B. de; FARIAS, J. R. B.; BARROS, A. H. C.; TEIXEIRA, W. G.; SILVA, A. A. G. da; CUNHA, G. R. da; CONCEIÇÃO, M. A. F.; HIGA, R.; PELLEGRINO, G. Q. |
Afiliação: |
JOSE EDUARDO B DE ALMEIDA MONTEIRO, CNPTIA; FALBERNI DE SOUZA COSTA, CPAF-AC; MARLOS ALVES BEZERRA, CNPAT; EDER COMUNELLO, CPAO; CORNELIO ALBERTO ZOLIN, CPAMT; JOSE RODRIGUES PEREIRA, CPAF-RO; NAGIB JORGE MELEM JUNIOR, CPAF-AP; ISAAC COHEN ANTONIO, CPAA; ALAILSON VENCESLAU SANTIAGO, CPATU; SILVANDO CARLOS DA SILVA, CNPAF; FERNANDO ANTONIO MACENA DA SILVA, CPAC; SILVIO STEINMETZ, CPACT; DIRCEU KLEPKER, CPACP; MAURICIO ANTONIO COELHO FILHO, CNPMF; OSVALDO MACHADO RODRIGUES CABRAL, CNPMA; ADERSON SOARES DE ANDRADE JUNIOR, CPAMN; DANIEL PEREIRA GUIMARAES, CNPMS; BALBINA MARIA ARAUJO SORIANO, CPAP; JOSE RICARDO MACEDO PEZZOPANE, CPPSE; BALBINO ANTONIO EVANGELISTA, CNPASA; ADMAR BEZERRA ALVES, CPAF-RR; MAGNA SOELMA BESERRA DE MOURA, CPATSA; JOSE RENATO BOUCAS FARIAS, CNPSO; ALEXANDRE HUGO CEZAR BARROS, CNPS; WENCESLAU GERALDES TEIXEIRA, CNPS; ANA A. GAMA DA SILVA; GILBERTO ROCCA DA CUNHA, CNPT; MARCO ANTONIO FONSECA CONCEICAO, CNPUV; ROSANA HIGA; GIAMPAOLO QUEIROZ PELLEGRINO, CNPTIA. |
Título: |
Agricultural climate risk zoning (ZARC). |
Ano de publicação: |
2021 |
Fonte/Imprenta: |
In: SOTTA, E. D.; SAMPAIO, F. G.; MARZALL, K.; SILVA, W . G. da (ed.). Adapting to climate change: strategies for Brazilian agricultural and livestock systems. Brasília, DF: MAPA, 2021. |
Páginas: |
p. 102-103. |
ISBN: |
978-65-86803-61-7 |
Idioma: |
Inglês Português |
Conteúdo: |
Agricultural Climate Risk Zoning (ZARC) was implemented in 1996 with the objective of delineating municipalities and planting times based on agroclimatic risk. At its base is, a network of researchers and technicians from Embrapa and several other state institutions and an elaborate construction of agrometeorological data analysis systems and mathematical simulations, which quantify the production risk in the normal climatic conditions of each region, in order to allow an adequate assessment of the variability of each location, season and its consequences for agricultural crops. |
Palavras-Chave: |
Cambio climático; ZARC; Zonificación. |
Thesagro: |
Agricultura; Mudança Climática; Zoneamento Climático. |
Thesaurus NAL: |
Agriculture; Climate change; Zoning. |
Categoria do assunto: |
P Recursos Naturais, Ciências Ambientais e da Terra |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/item/227637/1/PL-AGRICULTURAL-CLIMATE-RISK-ZONING-2021.pdf
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Marc: |
LEADER 02351naa a2200601 a 4500 001 2135946 005 2021-12-20 008 2021 bl uuuu u00u1 u #d 020 $a978-65-86803-61-7 100 1 $aMONTEIRO, J. E. B. de A. 245 $aAgricultural climate risk zoning (ZARC).$h[electronic resource] 260 $c2021 300 $ap. 102-103. 520 $aAgricultural Climate Risk Zoning (ZARC) was implemented in 1996 with the objective of delineating municipalities and planting times based on agroclimatic risk. At its base is, a network of researchers and technicians from Embrapa and several other state institutions and an elaborate construction of agrometeorological data analysis systems and mathematical simulations, which quantify the production risk in the normal climatic conditions of each region, in order to allow an adequate assessment of the variability of each location, season and its consequences for agricultural crops. 650 $aAgriculture 650 $aClimate change 650 $aZoning 650 $aAgricultura 650 $aMudança Climática 650 $aZoneamento Climático 653 $aCambio climático 653 $aZARC 653 $aZonificación 700 1 $aCOSTA, F. de S. 700 1 $aBEZERRA, M. A. 700 1 $aCOMUNELLO, E. 700 1 $aZOLIN, C. A. 700 1 $aPEREIRA, J. R. 700 1 $aMELEM JUNIOR, N. J. 700 1 $aANTONIO, I. C. 700 1 $aSANTIAGO, A. V. 700 1 $aSILVA, S. C. da 700 1 $aSILVA, F. A. M. da 700 1 $aSTEINMETZ, S. 700 1 $aKLEPKER, D. 700 1 $aCOELHO FILHO, M. A. 700 1 $aCABRAL, O. M. R. 700 1 $aANDRADE JUNIOR, A. S. de 700 1 $aGUIMARAES, D. P. 700 1 $aSORIANO, B. M. A. 700 1 $aPEZZOPANE, J. R. M. 700 1 $aEVANGELISTA, B. A. 700 1 $aALVES, A. B. 700 1 $aMOURA, M. S. B. de 700 1 $aFARIAS, J. R. B. 700 1 $aBARROS, A. H. C. 700 1 $aTEIXEIRA, W. G. 700 1 $aSILVA, A. A. G. da 700 1 $aCUNHA, G. R. da 700 1 $aCONCEIÇÃO, M. A. F. 700 1 $aHIGA, R. 700 1 $aPELLEGRINO, G. Q. 773 $tIn: SOTTA, E. D.; SAMPAIO, F. G.; MARZALL, K.; SILVA, W . G. da (ed.). Adapting to climate change: strategies for Brazilian agricultural and livestock systems. Brasília, DF: MAPA, 2021.
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