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21. | | SILVA, G. A. da; CAMÊLO, D. de L.; CORRÊA, M. M.; SOUZA JÚNIOR, V. S. de; RIBEIRO FILHO, M. R.; ARAUJO FILHO, J. C. de. Pedogenesis on coastal tablelands area with low range altimetry in Paraíba state. Revista Caatinga, v. 32, n. 2, p. 458-471, abr./jun. 2019. Biblioteca(s): Embrapa Solos. |
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22. | | CUNHA, T. J. F.; FLORES, C. A.; SA, I. B.; RIBEIRO FILHO, M. R.; MAZUTII, M.; TAURA, T. A.; SANTANA, M. de B.; PEREIRA, G. E. Soil zoning for wine certification of ride region of the sub-medium São Francisco river, Brazil. In: INTERNATIONAL SYMPOSIUM ON TROPICAL WINES, 5., 2016, Petrolina. Book of abstracts... Petrolina: Embrapa Semiárido, 2016. p. 16. Biblioteca(s): Embrapa Semiárido; Embrapa Uva e Vinho. |
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23. | | COSTA, E. U. C. da; ARAUJO, J. K. S.; NEVES, L. V. de M. W.; ARAUJO FILHO, J. C. de; SOUZA, J. E. S. de; CORRÊA, M. M.; RIBEIRO FILHO, M. R.; SOUZA JÚNIOR, V. S. de. Genesis and classification of Nitisols from volcano-sedimentary lithology in northeastern Brazil. Revista Brasileira de Ciência do Solo, v. 43, article e0180101, 2019. Biblioteca(s): Embrapa Solos. |
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24. | | SOUZA, W. L. da S.; VIEIRA, H. S. E.; SILVA, Y. J. A. B. de; CANTALICE, J. R. B.; MEUNIER, I. M. J.; RIBEIRO FILHO, M. R.; SILVA, A. B. da; COSTA, C. da S. Número de amostras necessárias para representar alguns atributos químicos de um solo sob diferentes sistemas de manejo JORNADA DE ENSINO, PESQUISA E EXTENSÃO DA UNIVERSIDADE FEDERAL DE PERNAMBUCO, 7., 2007, Recife. Biblioteca(s): Embrapa Solos. |
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25. | | SANTANA, M. de B.; RIBEIRO FILHO, M. R.; ALMEIDA, B. G. de; PEREIRA, G. E.; CUNHA, T. J. F.; NASCIMENTO, A. M. de S.; COSTA, K. G. da; SOUZA, J. F. de; SILVA, J. F. M. Productivity and quality of Tempranillo grapes cultivated on three different soils in the Sao Francisco Valley, Brazil. In: WORLD CONGRESS OF SOIL SCIENCE, 21., 2018, Rio de Janeiro. Soil science: beyond food and fuel: proceedings. Rio de Janeiro: SBCS, 2018. Biblioteca(s): Embrapa Semiárido. |
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26. | | VIEIRA, H. S. E.; SOUZA, W. L. da S.; SILVA, Y. J. A. B. de; SILVA, U. J. A. B. da, CURZ NETO, H. F. de, CANTALICE, J. R. B.; RIBEIRO FILHO, M. R.; SILVA, A. B. da. Propriedades Físicas e teor de carbono orgânico de um argissolo sob dois sistema de manejo e mata nativa. JORNADA DE ENSINO, PESQUISA E EXTENSÃO DA UNIVERSIDADE FEDERAL DE PERNAMBUCO, 7., 2007, Recife. Rsumo Biblioteca(s): Embrapa Solos. |
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27. | | ARAÚJO FILHO, J. C.; GOMES, E. C.; SILVA, F. H. B. B.; OLIVEIRA NETO, M. B.; PARAHYBA, R. da B. V.; CUNHA, T. J. F.; CAVALCANTI, A. C.; SANTOS, J. C. P.; SILVA, A. B.; LOPES, O. F.; LEITE, A. P.; SILVA, M. S. L.; RIBEIRO FILHO, M. R.; ACCIOLLY, L. J. de O.; MARQUES, F. A.; AMARAL, A. J. do; LIMA, P. C. de. Zoneamento agroecológico do estado de Alagoas: levantamento de reconhecimento de baixa e média intensidade dos solos do estado de Alagoas - relatório técnico. Recife, PE: Embrapa Solos - UEP Recife; Maceió, AL: Secretaria de Estado da Agricultura e Desenvolvimento Agrário de Alagoas, 2012. 245 p. il., color. Acompanha mapas.
Convênio SEAGRI-AL/ Embrapa Solos nº 10200.09/0134-5. Biblioteca(s): Embrapa Solos / UEP-Recife. |
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28. | | SANTOS, J. C. P. dos; ARAÚJO FILHO, J. C. de; BARROS, A. H. C.; ACCIOLY, L. J. de O. V.; TAVARES, S. C. C. de H.; SILVA, A. B. da; LEITE, A. P.; NASCIMENTO, A. F. do; AMARAL, A. J. do; CAVALCANTI, A. C.; GOMES, E. C.; MARQUES, F. A.; SILVA, F. H. B. B. da; LUZ, L. R. Q. P. da; OLIVEIRA NETO, M. B. de; SILVA, M. S. L. da; RIBEIRO FILHO, M. R.; LOPES, O. F.; LIMA, P. C. de; PARAHYBA, R. da B. V.; CUNHA, T. J. F.; TABOSA, J. N.; VAREJÃO-SILVA, M. A.; LOPES, H. L.; SILVEIRA, H. L. F. da; SILVA, E. A. da; SILVA, J. A. da; ALVES, E. da S.; MENEZES, A.; SILVA, D. F. da; FONSECA, J. C. da; BOTELHO, F. P. Zoneamento agroecológico de Alagoas. Maceió, AL: Secretaria de Estado da Agricultura e do Desenvolvimento Agrário; Recife, PE: Embrapa Embrapa Solos - UEP Recife, 2013. SANTOS, J. C. P. dos; ARAÚJO FILHO, J. C. de; BARROS, A. H. C.; ACCIOLY, L. J. de O. V.; TAVARES, S. C. C. de H.; SILVA, A. B. da (Org.). VIZON 1.04 - ZAAL 1.09.
Acompanha mapas - escalas 1: 100.000; 1: 250.000; 1: 300.000. Biblioteca(s): Embrapa Solos / UEP-Recife. |
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Registros recuperados : 28 | |
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Registro Completo
Biblioteca(s): |
Embrapa Solos. |
Data corrente: |
08/07/2019 |
Data da última atualização: |
11/11/2021 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 2 |
Autoria: |
COSTA, E. U. C. da; ARAUJO, J. K. S.; NEVES, L. V. de M. W.; ARAUJO FILHO, J. C. de; SOUZA, J. E. S. de; CORRÊA, M. M.; RIBEIRO FILHO, M. R.; SOUZA JÚNIOR, V. S. de. |
Afiliação: |
EDIVAN UCHÔA CAVALCANTI DA COSTA, UFRPE; JANE KELLY SILVA ARAUJO, UFRPE; LAÉRCIO VIEIRA DE MELO WANDERLEY NEVES, UFRPE; JOSE COELHO DE ARAUJO FILHO, CNPS; JULIET EMÍLIA SANTOS DE SOUSA, UFRPE; MARCELO METRI CORRÊA, UFRPE; MATEUS ROSAS RIBEIRO FILHO, UFRPE; VALDOMIRO SEVERINO DE SOUZA JÚNIOR, UFRPE. |
Título: |
Genesis and classification of Nitisols from volcano-sedimentary lithology in northeastern Brazil. |
Ano de publicação: |
2019 |
Fonte/Imprenta: |
Revista Brasileira de Ciência do Solo, v. 43, article e0180101, 2019. |
DOI: |
https://doi.org/10.1590/18069657rbcs20180101 |
Idioma: |
Inglês |
Conteúdo: |
On the southern coast of Pernambuco State (PE), Brazil, lithotypes of the Cabo Basin (volcanic and sedimentary rocks), in association with the relief, allow the determination of the dynamics of the formation of Nitossolos Háplicos (Nitisols), including those with high levels of exchangeable aluminum. The objective of this study was to evaluate the influence of lithological diversity (basalt and sedimentary siliciclastic rocks) on the morphological, physical, chemical, and mineralogical properties of Nitossolos Háplicos along a slope (P1-summit, P2-backslope, P3-footslope) on the southern coast of PE, in order to consider its genesis and the relation of soil properties to adjacent environments and to evaluate its framing within the Brazilian Soil Classification System (SiBCS). The interaction of lithology/soil permeability and climate indicate significant differences in the mineralogical composition and dynamics of soil chemical elements. The profiles P1 and P2 are subject to monosialitization, ferralitization, and alitization processes. All profiles showed high Fe contents (ferric soils) and clay fractions, consisting primarily of kaolinite, goethite, hematite, and gibbsite, as well as quartz and feldspar in the sand and silt fractions. However, smectite minerals (P3) are probably inherited from the sedimentary source material. In the conglomerate samples, under P3, biotite, muscovite, and plagioclase were identified. Allytic characteristics (P3) are probably associated with the weathering of aluminous smectite minerals. These properties distinguish these soils from adjacent Nitossolos and other Nitossolos in Brazil. For the classification of soils according to SiBCS, considering the high levels of Fe and Al, Nitossolo Háplico distroférrico (P1 and P2) and Nitossolo Háplico alitiférrico (P3) are suggested, and according to the World Reference Base of Soils (WRB), the soils are classified as Ferritic Nitisols. MenosOn the southern coast of Pernambuco State (PE), Brazil, lithotypes of the Cabo Basin (volcanic and sedimentary rocks), in association with the relief, allow the determination of the dynamics of the formation of Nitossolos Háplicos (Nitisols), including those with high levels of exchangeable aluminum. The objective of this study was to evaluate the influence of lithological diversity (basalt and sedimentary siliciclastic rocks) on the morphological, physical, chemical, and mineralogical properties of Nitossolos Háplicos along a slope (P1-summit, P2-backslope, P3-footslope) on the southern coast of PE, in order to consider its genesis and the relation of soil properties to adjacent environments and to evaluate its framing within the Brazilian Soil Classification System (SiBCS). The interaction of lithology/soil permeability and climate indicate significant differences in the mineralogical composition and dynamics of soil chemical elements. The profiles P1 and P2 are subject to monosialitization, ferralitization, and alitization processes. All profiles showed high Fe contents (ferric soils) and clay fractions, consisting primarily of kaolinite, goethite, hematite, and gibbsite, as well as quartz and feldspar in the sand and silt fractions. However, smectite minerals (P3) are probably inherited from the sedimentary source material. In the conglomerate samples, under P3, biotite, muscovite, and plagioclase were identified. Allytic characteristics (P3) are probably associated with... Mostrar Tudo |
Thesagro: |
Nitossolo. |
Thesaurus NAL: |
Nitisols; Smectite. |
Categoria do assunto: |
P Recursos Naturais, Ciências Ambientais e da Terra |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/item/199267/1/2019-024.pdf
|
Marc: |
LEADER 02762naa a2200253 a 4500 001 2110452 005 2021-11-11 008 2019 bl uuuu u00u1 u #d 024 7 $ahttps://doi.org/10.1590/18069657rbcs20180101$2DOI 100 1 $aCOSTA, E. U. C. da 245 $aGenesis and classification of Nitisols from volcano-sedimentary lithology in northeastern Brazil.$h[electronic resource] 260 $c2019 520 $aOn the southern coast of Pernambuco State (PE), Brazil, lithotypes of the Cabo Basin (volcanic and sedimentary rocks), in association with the relief, allow the determination of the dynamics of the formation of Nitossolos Háplicos (Nitisols), including those with high levels of exchangeable aluminum. The objective of this study was to evaluate the influence of lithological diversity (basalt and sedimentary siliciclastic rocks) on the morphological, physical, chemical, and mineralogical properties of Nitossolos Háplicos along a slope (P1-summit, P2-backslope, P3-footslope) on the southern coast of PE, in order to consider its genesis and the relation of soil properties to adjacent environments and to evaluate its framing within the Brazilian Soil Classification System (SiBCS). The interaction of lithology/soil permeability and climate indicate significant differences in the mineralogical composition and dynamics of soil chemical elements. The profiles P1 and P2 are subject to monosialitization, ferralitization, and alitization processes. All profiles showed high Fe contents (ferric soils) and clay fractions, consisting primarily of kaolinite, goethite, hematite, and gibbsite, as well as quartz and feldspar in the sand and silt fractions. However, smectite minerals (P3) are probably inherited from the sedimentary source material. In the conglomerate samples, under P3, biotite, muscovite, and plagioclase were identified. Allytic characteristics (P3) are probably associated with the weathering of aluminous smectite minerals. These properties distinguish these soils from adjacent Nitossolos and other Nitossolos in Brazil. For the classification of soils according to SiBCS, considering the high levels of Fe and Al, Nitossolo Háplico distroférrico (P1 and P2) and Nitossolo Háplico alitiférrico (P3) are suggested, and according to the World Reference Base of Soils (WRB), the soils are classified as Ferritic Nitisols. 650 $aNitisols 650 $aSmectite 650 $aNitossolo 700 1 $aARAUJO, J. K. S. 700 1 $aNEVES, L. V. de M. W. 700 1 $aARAUJO FILHO, J. C. de 700 1 $aSOUZA, J. E. S. de 700 1 $aCORRÊA, M. M. 700 1 $aRIBEIRO FILHO, M. R. 700 1 $aSOUZA JÚNIOR, V. S. de 773 $tRevista Brasileira de Ciência do Solo$gv. 43, article e0180101, 2019.
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