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203. | | OLIVEIRA, K. B.; NASCIMENTO, G. M.; BRIZOLA, D. C.; OLIVEIRA, T. B. M.; ALMEIDA, A. M. R.; OLIVEIRA, M. C. N. Análise de atividade microbiana do solo em diferentes sistemas de manejo e profundidades pelo método de hidrólise de diacetato de fluoresceína. In: JORNADA ACADÊMICA DA EMBRAPA SOJA, 9., 2014, Londrina. Resumos expandidos... Londrina: Embrapa Soja, 2014. p. 151-157. Biblioteca(s): Embrapa Soja. |
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206. | | MACEDO, R. S.; TEIXEIRA, W. G.; LIMA, H. N.; GUIMARÃES, S. T.; GÓES FILHO, L. C. de; SILVA, F. W. R.; SOUZA, A. C. G. de; ENCINAS, O. C. Classificação de perfis com horizonte A antrópico (terra preta de índio) em áreas de várzea do Rio Solimões, AM. In: CONGRESSO BRASILEIRO DE CIÊNCIA DO SOLO, 32., 2009, Fortaleza. O solo e a produção de bioenergia: perspectivas e desafios : resumos. [Viçosa, MG]: SBCS; Fortaleza: UFC, 2009. p. 495. PT2377. Biblioteca(s): Embrapa Amazônia Ocidental. |
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211. | | RODRIGUES, D. da C.; ALVES, M. E. dos S.; PALHARINI, W. G.; SANTOS, S. A. dos; MARSCHALL, I. R.; MARQUES, R. F.; CONCENCO, G.; SALTON, J. C.; TOMAZI, M. Composição de plantas daninhas em áreas agrícolas consolidadas em função do preparo do solo. In: JORNADA DE INICIAÇÃO À PESQUISA DA EMBRAPA, 2014, Dourados. Resumos... Brasília, DF: Embrapa, 2014. 1 CD-ROM; JIPE 2014. Biblioteca(s): Embrapa Agropecuária Oeste. |
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213. | | DUPONT, P. B.; LIMA, C. L. R. de; PILLON, C. N.; ABREU, M. D. D.; PINTO M. B.; KUNDE, R. Carbono, nitrogênio e fracionamento granulométrico da matéria orgânica de um argissolo vermelho amarelo sob diferentes manejos da encosta do sudoeste, Turuçu, RS. In: REUNIÃO SUL-BRASILEIRA DE CIÊNCIA DO SOLO, 8., 2010, Santa Maria. A ciência do solo frente à diversidade da agricultura: do saraquá à agricultura de precisão. Santa Maria: Sociedade Brasileira de Ciência do Solo, UFSM, 2010. 1 CD-ROM Biblioteca(s): Embrapa Clima Temperado. |
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218. | | AMARAL, F. C. S. do; CARVALHO JUNIOR, W. de; BHERING, S. B.; CHAGAS, C. da S.; AGLIO, M. L. D. Mapa de Ccasses de terras para irrigação localizada cultura da acerola localizada Projeto Jequitaí - MG. In: AMARAL, F. C. S. do; CARVALHO JUNIOR, W. de; BHERING, S. B.; CHAGAS, C. da S.; ÁGLIO, M. L. D. Classificação das Terras para Irrigação - SiBCTI. Rio de janeiro: Embrapa Solos; Brasília: CODEVASF, 2009. 68 p. 1 p. 1 Mapa color. escala 1: 50.000. Biblioteca(s): Embrapa Solos. |
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219. | | AMARAL, F. C. S. do; CARVALHO JUNIOR, W. de; BHERING, S. B.; CHAGAS, C. da S.; AGLIO, M. L. D. Mapa de Classes de Terras para Irrigação Cultura da Acerola por Aspersão Projeto Jequitaí - MG. In: AMARAL, F. C. S. do; CARVALHO JUNIOR, W. de; BHERING, S. B.; CHAGAS, C. da S.; ÁGLIO, M. L. D. Classificação das Terras para Irrigação - SiBCTI. Rio de janeiro: Embrapa Solos; Brasília: CODEVASF, 2009. 68 p. 1 p. 1 mapa color. escala 1:50.000 Biblioteca(s): Embrapa Solos. |
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220. | | AMARAL, F. C. S. do; CARVALHO JUNIOR, W. de; BHERING, S. B.; CHAGAS, C. da S.; AGLIO, M. L. D. Mapa de Classes de Terras para Irrigação Cultura da Acerola por Superfície Projeto Jequitaí - MG In: AMARAL, F. C. S. do; CARVALHO JUNIOR, W. de; BHERING, S. B.; CHAGAS, C. da S.; ÁGLIO, M. L. D. Classificação das Terras para Irrigação - SiBCTI. Rio de janeiro: Embrapa Solos; Brasília: CODEVASF, 2009. 68 p. 1 p. 1 mapa color. escala: 10:950.000. Biblioteca(s): Embrapa Solos. |
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Registro Completo
Biblioteca(s): |
Embrapa Gado de Corte. |
Data corrente: |
19/03/2010 |
Data da última atualização: |
27/04/2010 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
DIECKOW, J.; BAYER, C.; CONCEIÇÃO, P. C.; ZANATTA, J. A.; MARTIN NETO, L.; MILORI, D. M. B. P.; SALTON, J. C.; MACEDO, M. C. M.; MIELNICZUK, J.; HERNANI, L. C. |
Afiliação: |
J. DIECKOW, UFPR; C. BAYER, UFRGS; P. C. CONCEIÇÃO, UNIVERSIDADE TECNOLÓGICA FEDERAL DO PARANÁ - DOIS VIZINHOS; J. A. ZANATTA, UFRGS; LADISLAU MARTIN NETO, CNPDIA - Labex USA; DEBORA MARCONDES BASTOS P MILORI, CNPDIA; JULIO CESAR SALTON, CPAO; MANUEL CLAUDIO MOTTA MACEDO, CNPGC; J. MIELNICZUK, UFRGS; LUIS CARLOS HERNANI, CPAO. |
Título: |
Land use, tillage, texture and organic matter stock and composition in tropical and subtropical brazilian soils. |
Ano de publicação: |
2009 |
Fonte/Imprenta: |
European Journal of Soil Science, Oxford, v. 60, p. 240-249, Apr. 2009. Issue 2. |
DOI: |
10.1111/j.1365-2389.2008.01101.x |
Idioma: |
Inglês |
Conteúdo: |
We examined the influence of land use change, tillage system and soil texture on organic carbon (C) stocks and on organic matter composition of tropical and subtropical soils from Brazil at four long-term experiments (11–25 years) based on fine- and coarse-textured soils. Soil samples were collected from the 0–5, 5–10 and 10–20 cm layers of conventional tillage (CT) and no-till (NT) plots, and of the adjoining soil under native vegetation (NV) of Cerrado (tropical) or grassland (subtropical). Conversion of NV to CT resulted in losses of 7–29% of the original C stock of 0–20 cm; conversion to NT increased this C stock by 0–12% compared with CT. Organic matter composition of the 0–5 cm layer, assessed by solid state CPMAS-13C-NMR, ESR and laser induced fluorescence spectroscopies, was affected by land use and tillage systems. Conversion of NV to CT decreased O-alkyl and increased aromatic, carbonyl, aromatic/O-alkyl ratio, free radicals concentration and fluorescence signal. The opposite trend was observed when NT replaced CT. The relative losses and gains of C and qualitative changes resulting from land use and tillage were less evident in fine- than in coarse-textured soils, suggesting a greater resistance and a smaller resilience of fine- compared with coarse-textured soils. The direct relation between increase in C stock and increase in potentially labile moieties (e.g. O-alkyl) and the decrease in more recalcitrant moieties (e.g. aromatics) in NT soils suggests that spatial inaccessibility by aggregates is playing a major role, compared with selective preservation, in promoting C accumulation in NT soils. MenosWe examined the influence of land use change, tillage system and soil texture on organic carbon (C) stocks and on organic matter composition of tropical and subtropical soils from Brazil at four long-term experiments (11–25 years) based on fine- and coarse-textured soils. Soil samples were collected from the 0–5, 5–10 and 10–20 cm layers of conventional tillage (CT) and no-till (NT) plots, and of the adjoining soil under native vegetation (NV) of Cerrado (tropical) or grassland (subtropical). Conversion of NV to CT resulted in losses of 7–29% of the original C stock of 0–20 cm; conversion to NT increased this C stock by 0–12% compared with CT. Organic matter composition of the 0–5 cm layer, assessed by solid state CPMAS-13C-NMR, ESR and laser induced fluorescence spectroscopies, was affected by land use and tillage systems. Conversion of NV to CT decreased O-alkyl and increased aromatic, carbonyl, aromatic/O-alkyl ratio, free radicals concentration and fluorescence signal. The opposite trend was observed when NT replaced CT. The relative losses and gains of C and qualitative changes resulting from land use and tillage were less evident in fine- than in coarse-textured soils, suggesting a greater resistance and a smaller resilience of fine- compared with coarse-textured soils. The direct relation between increase in C stock and increase in potentially labile moieties (e.g. O-alkyl) and the decrease in more recalcitrant moieties (e.g. aromatics) in NT soils suggests that spati... Mostrar Tudo |
Thesagro: |
Solo. |
Categoria do assunto: |
K Ciência Florestal e Produtos de Origem Vegetal |
Marc: |
LEADER 02425naa a2200253 a 4500 001 1661828 005 2010-04-27 008 2009 bl --- 0-- u #d 024 7 $a10.1111/j.1365-2389.2008.01101.x$2DOI 100 1 $aDIECKOW, J. 245 $aLand use, tillage, texture and organic matter stock and composition in tropical and subtropical brazilian soils. 260 $c2009 520 $aWe examined the influence of land use change, tillage system and soil texture on organic carbon (C) stocks and on organic matter composition of tropical and subtropical soils from Brazil at four long-term experiments (11–25 years) based on fine- and coarse-textured soils. Soil samples were collected from the 0–5, 5–10 and 10–20 cm layers of conventional tillage (CT) and no-till (NT) plots, and of the adjoining soil under native vegetation (NV) of Cerrado (tropical) or grassland (subtropical). Conversion of NV to CT resulted in losses of 7–29% of the original C stock of 0–20 cm; conversion to NT increased this C stock by 0–12% compared with CT. Organic matter composition of the 0–5 cm layer, assessed by solid state CPMAS-13C-NMR, ESR and laser induced fluorescence spectroscopies, was affected by land use and tillage systems. Conversion of NV to CT decreased O-alkyl and increased aromatic, carbonyl, aromatic/O-alkyl ratio, free radicals concentration and fluorescence signal. The opposite trend was observed when NT replaced CT. The relative losses and gains of C and qualitative changes resulting from land use and tillage were less evident in fine- than in coarse-textured soils, suggesting a greater resistance and a smaller resilience of fine- compared with coarse-textured soils. The direct relation between increase in C stock and increase in potentially labile moieties (e.g. O-alkyl) and the decrease in more recalcitrant moieties (e.g. aromatics) in NT soils suggests that spatial inaccessibility by aggregates is playing a major role, compared with selective preservation, in promoting C accumulation in NT soils. 650 $aSolo 700 1 $aBAYER, C. 700 1 $aCONCEIÇÃO, P. C. 700 1 $aZANATTA, J. A. 700 1 $aMARTIN NETO, L. 700 1 $aMILORI, D. M. B. P. 700 1 $aSALTON, J. C. 700 1 $aMACEDO, M. C. M. 700 1 $aMIELNICZUK, J. 700 1 $aHERNANI, L. C. 773 $tEuropean Journal of Soil Science, Oxford$gv. 60, p. 240-249, Apr. 2009. Issue 2.
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