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Registros recuperados : 45.887 | |
2. | | TAVARES, V. do N.; SILVA, I. J. S. da; ROLIM NETO, F. C.; PARAHYBA, R. da B. V.; MENEZES, R. S. C.; CORREA, M. M.; ARAÚJO, M. do S. B. de. Influência da vinhaça e colheita mecanizada nos aspectos físicos e químicos do solo no Município de Paudalho - PE. Sociedade & Natureza, v. 36, n. 1, e69886, 2024. Também publicado em Inglês: Influence of vinasse application and mechanized harvesting on the physical and chemical characteristics of an Argisol cultivated with sugarcane in NE Brazil. Biblioteca(s): Embrapa Solos. |
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3. | | WASSERMAN, M. A. V.; VIANA, A. G.; SILVA, M. M. da; BARTOLY, F.; PEREIRA, T. R.; VIVONE, R. J.; FERREIRA, A. C. de M.; PEREZ, D. V. Analysing the behaviour of 90Sr and stable Sr in highly weathered soils: soil to plant transfer factor and geochemical partitioning. Journal of Environmental Radioactivity, v. 271, 107319, Jan. 2024. Biblioteca(s): Embrapa Solos. |
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6. | | FRANÇA, L. C. de J.; GONÇALVES, A. F. A.; SILVA, T. E. de M.; LOPES SOBRINHO, O. P.; LISBOA, G. dos S.; ACERBI JUNIOR, F. W.; MUCIDA, D. P. Delimitação de áreas de uso restrito segundo o novo Código Florestal brasileiro. Cadernos de Ciência & Tecnologia, v. 41, e27392, 2024. Título em inglês: Delimitation of areas with restricted use according to the new Brazil's Forest Code. Biblioteca(s): Embrapa Unidades Centrais. |
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7. | | SOUZA, V. S.; SANTOS, D. de C.; FERREIRA, J. G.; SOUZA, S. O. de; GONÇALO, T. P.; SOUSA, J. V. A. de; CRUVINEL, A. G.; VILELA, L.; PAIM, T. do P.; ALMEIDA, R. E. M. de; CANISARES, L. P.; CHERUBIN, M. R. Cover crop diversity for sustainable agriculture: insights from the Cerrado biome. Soil Use and Management, v. 40, e13014, 2024. Biblioteca(s): Embrapa Pesca e Aquicultura. |
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8. | | VIANA, J. H. M.; COELHO, A. M.; THOMAZINI, A.; CARVALHO, M. P. F. de; FRANÇA, A. C. F.; CLEMENTE, E. de P. Dry matter production and nutrient extraction by three successive crops fertilized with serpentinite rock as a soil remineralizer. Observatorio de La Economia Latinoamerica, v. 22, n. 4, p. 1-17, 2024. Biblioteca(s): Embrapa Milho e Sorgo. |
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10. | | BROWN, G. G.; DEMETRIO, W.; GABRIAC, Q.; PASINI, A.; KORASAKI, V.; OLIVEIRA, L.; FRANCHINI, J. C.; TORRES, E.; GALERANI, P. R.; GAZZIERO, D. L. P.; BENITO, N. P.; NUNES, D. H.; SANTOS, A.; FERREIRA, T.; NADOLNY, H. S.; BARTZ, M.; MASCHIO, W.; DUDAS, R. T.; ZAGATTO, M.; NIVA, C. C.; CLASEN, L.; SAUTTER, K.; FROUFE, L. C. M.; SEOANE, C. E. S.; MORAES, A. de; JAMES, S.; ALBERTON, O.; JÚNIOR, O. B.; SARAIVA, O. F.; GARCIA, A.; OLIVEIRA, E.; CÉSAR, R.; CORREA-FERREIRA, B. S.; BRUZ, L. S. M.; SILVA, E. da; CARDOSO, G. B. X.; LAVELLE, P.; VELÁSQUEZ, E.; CREMONESI, M.; PARRON, L. M.; BAGGIO, A. J.; NEVES, E. J. M.; HUNGRIA, M.; CAMPOS, T. A.; SILVA, V. L. da; REISSMANN, C. B.; CONRADO, A. C.; BOUILLET, J. D.; GONÇALVES, J. L. M.; BRANDANI, C. B.; VIANI, R. A. G.; PAULA, R. R.; LACLAU, J.; PEÑA-VENEGAS, C. P.; PERES, C.; DECAËNS, T.; PEY, B.; EISENHAUER, N.; COOPER, M.; MATHIEU, J. Soil macrofauna communities in Brazilian land-use systems. Biodiversity Data Journal, v. 12, e115000, 2024. Biblioteca(s): Embrapa Florestas; Embrapa Recursos Genéticos e Biotecnologia; Embrapa Soja; Embrapa Unidades Centrais. |
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12. | | SOUZA, H. A. de; GUEDES, F. L.; POMPEU, R. C. F. F.; ODA-SOUZA, M.; CLARK, M. V. G.; ANDRADE, H. A. F de; PRIMO, A. A.; SAGRILO, E. Combination of organic amendments as a soil recovering strategy at a desertification hotspot in the Brazilian semiarid. Land Degradation and Development, v. 35, n. 1, p. 534-548, Jan. 2024. Biblioteca(s): Embrapa Caprinos e Ovinos; Embrapa Meio-Norte. |
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14. | | SANTAREN, K. C. F.; ARMACOLO, N. M.; BALIEIRO, F. de C.; RODRIGUES, R. de A. R.; ALVES, B. J. R.; FONTANA, A.; RACHID, C. T. C. C. Compositional and functional response of bacterial communities and soil greenhouse gas fluxes in pastures after a strong precipitation-induced event. Applied Soil Ecology, v. 196, 105288, Apr. 2024. Biblioteca(s): Embrapa Agrobiologia; Embrapa Solos. |
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15. | | LOUZADA, R. O.; BERGIER, I.; MCGLUE, M. M.; ROQUE, F. de O.; RASBOLD, G.; DOMINGOS-LUZ, L.; LO, E.; ASSINE, M. L. Fluvial avulsions influence soil fertility in the Pantanal wetlands (Brazil). Science of the Total Environment, v. 926, 172127, May 2024. Biblioteca(s): Embrapa Agricultura Digital. |
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19. | | SILVA, F. A. M. da; OLIVEIRA, A. D. de; CARVALHO, A. M. de; MARCHAO, R. L.; LUIZ, A. J. B.; RIBEIRO, F. P.; MULLER, A. G. Effects of agricultural management and of climate change on N2O emissions in an area of the Brazilian Cerrado: Measurements and simulations using the STICS soil-crop model. Agriculture, Ecosystems and Environment, v. 363, 2024. 13 p. Biblioteca(s): Embrapa Cerrados; Embrapa Meio Ambiente. |
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20. | | DÍAZ-GUADARRAMA, S.; VARÓN-RAMÍREZ, V. M.; LIZARAZO, I.; GUEVARA, M.; ANGELINI, M.; ARAUJO-CARRILLO, G. A.; ARGEÑAL, J.; ARMAS, D.; BALTA, R. A.; BOLIVAR, A.; BUSTAMANTE, N.; DART, R. de O.; DELL AQUA, M.; ENCINA, A.; FIGUEREDO, H.; FONTES, F.; GUTIÉRREZ-DIAZ, J. S.; JIMÉNEZ, W.; LAVADO, R. S.; BACA, J. F. M.; MENDONÇA-SANTOS, M. de L.; MORETTI, L. M.; MUÑOZ, I. D.; OLIVERA, C.; OLMEDO, G.; OMUTO, C.; ORTIZ, S.; PASCALE, C.; PFEIFFER, M.; RAMOS, I. A.; RÍOS, D.; RIVERA, R.; RODRÍGUEZ, L. M.; RODRÍGUEZ, D. M.; ROSALES, A.; ROSALES, K.; SCHULZ, G.; SEVILLA, V.; TENTI, L. M.; VARGAS, R.; VASQUES, G. M.; YIGINI, Y.; RUBIANO, Y. Improving the Latin America and Caribbean Soil Information System (SISLAC) database enhances its usability and scalability Earth System Science Data, v. 16, n. 3, p. 1229-1246, 2024. Biblioteca(s): Embrapa Solos. |
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Registros recuperados : 45.887 | |
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Registro Completo
Biblioteca(s): |
Embrapa Solos. |
Data corrente: |
14/09/2022 |
Data da última atualização: |
19/03/2024 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
DÍAZ-GUADARRAMA, S.; VARÓN-RAMÍREZ, V. M.; LIZARAZO, I.; GUEVARA, M.; ANGELINI, M.; ARAUJO-CARRILLO, G. A.; ARGEÑAL, J.; ARMAS, D.; BALTA, R. A.; BOLIVAR, A.; BUSTAMANTE, N.; DART, R. de O.; DELL AQUA, M.; ENCINA, A.; FIGUEREDO, H.; FONTES, F.; GUTIÉRREZ-DIAZ, J. S.; JIMÉNEZ, W.; LAVADO, R. S.; BACA, J. F. M.; MENDONÇA-SANTOS, M. de L.; MORETTI, L. M.; MUÑOZ, I. D.; OLIVERA, C.; OLMEDO, G.; OMUTO, C.; ORTIZ, S.; PASCALE, C.; PFEIFFER, M.; RAMOS, I. A.; RÍOS, D.; RIVERA, R.; RODRÍGUEZ, L. M.; RODRÍGUEZ, D. M.; ROSALES, A.; ROSALES, K.; SCHULZ, G.; SEVILLA, V.; TENTI, L. M.; VARGAS, R.; VASQUES, G. M.; YIGINI, Y.; RUBIANO, Y. |
Afiliação: |
SERGIO DÍAZ-GUADARRAMA, UNIVERSIDAD NACIONAL DE COLOMBIA; VIVIANA M. VARÓN-RAMÍREZ, UNIVERSIDAD NACIONAL AUTÓNOMA DE MÉXICO/CORPORACIÓN COLOMBIANA DE INVESTIGACIÓN AGROPECUARIA AGROSAVIA; IVÁN LIZARAZO, UNIVERSIDAD NACIONAL DE COLOMBIA; MARIO GUEVARA, UNIVERSIDAD NACIONAL AUTÓNOMA DE MÉXICO/UNIVERSITY OF CALIFORNIA/UNITED STATES DEPARTMENT OF AGRICULTURE; MARCOS ANGELINI, FAO; GUSTAVO A. ARAUJO-CARRILLO, CORPORACIÓN COLOMBIANA DE INVESTIGACIÓN AGROPECUARIA AGROSAVIA; JAINER ARGEÑAL, UNIVERSIDAD NACIONAL AUTÓNOMA DE HONDURAS; DAPHNE ARMAS, UNIVERSIDAD DE ALMERÍA; RAFAEL A. BALTA, MINISTERIO DE DESARROLLO AGRARIO Y RIEGO; ADRIANA BOLIVAR, INSTITUTO GEOGRÁFICO AGUSTÍN CODAZZI; NELSON BUSTAMANTE, SERVICIO AGRÍCOLA Y GANADERO; RICARDO DE OLIVEIRA DART, CNPS; MARTIN DELL AQUA, MINISTERIO DE GANADERÍA, AGRICULTURA Y PESCA; ARNULFO ENCINA, UNIVERSIDAD NACIONAL DE ASUNCIÓN; HERNÁN FIGUEREDO, SOCIEDAD BOLIVIANA DE LA CIENCIA DEL SUELO; FERNANDO FONTES, MINISTERIO DE GANADERÍA, AGRICULTURA Y PESCA; JOAN S. GUTIÉRREZ-DIAZ, AARHUS UNIVERSITY; WILMER JIMÉNEZ, MINISTERIO DE AGRICULTURA Y GANADERÍA; RAÚL S. LAVADO, UNIVERSIDAD DE BUENOS AIRES; JESUS FERNANDO MANSILLA BACA, CNPS; MARIA DE LOURDES MENDONÇA SANTOS BREFIN, CNPS; LUCAS M. MORETTI, INSTITUTO NACIONAL DE TECNOLOGÍA AGROPECUARIA; IVÁN D. MUÑOZ, INSTITUTO GEOGRÁFICO AGUSTÍN CODAZZI; CAROLINA OLIVERA, FAO; GUILLERMO OLMEDO, FAO; CHRISTIAN OMUTO, FAO; SOL ORTIZ, SECRETARÍA DE AGRICULTURA Y DESARROLLO RURAL; CARLA PASCALE, MINISTERIO DE AGRICULTURA, GANADERÍA Y PESCA; MARCO PFEIFFER, UNIVERSIDAD DE CHILE; IVÁN A. RAMOS, INSTITUTO DE INVESTIGACIÓN AGROPECUARIA DE PANAMÁ; DANNY RÍOS, UNIVERSIDAD NACIONAL DE ASUNCIÓN; RAFAEL RIVERA, MINISTERIO DE MEDIO AMBIENTE; LADY M. RODRÍGUEZ, INSTITUTO GEOGRÁFICO AGUSTÍN CODAZZI; DARÍO M. RODRÍGUEZ, INSTITUTO NACIONAL DE TECNOLOGÍA AGROPECUARIA; ALBÁN ROSALES, INSTITUTO DE INNOVACIÓN EN TRANSFERENCIA Y TECNOLOGÍA AGROPECUARIA; KENSET ROSALES, MINISTERIO DE AMBIENTE Y RECURSOS NATURALES; GUILLERMO SCHULZ, INSTITUTO NACIONAL DE TECNOLOGÍA AGROPECUARIA; VICTOR SEVILLA, UNIVERSIDAD CENTRAL DE VENEZUELA; LEONARDO M. TENTI, INSTITUTO NACIONAL DE TECNOLOGÍA AGROPECUARIA; RONALD VARGAS, FAO; GUSTAVO DE MATTOS VASQUES, CNPS; YUSUF YIGINI, FAO; YOLANDA RUBIANO, UNIVERSIDAD NACIONAL DE COLOMBIA. |
Título: |
Improving the Latin America and Caribbean Soil Information System (SISLAC) database enhances its usability and scalability |
Ano de publicação: |
2024 |
Fonte/Imprenta: |
Earth System Science Data, v. 16, n. 3, p. 1229-1246, 2024. |
DOI: |
https://doi.org/10.5194/essd-16-1229-2024 |
Idioma: |
Inglês |
Conteúdo: |
Spatial soil databases can help model complex phenomena in which soils are a decisive factor – for example, evaluating agricultural potential or estimating carbon storage capacity. The Latin America and Caribbean Soil Information System, SISLAC, is a regional initiative promoted by the Food and Agriculture Organization’s (FAO) Latin America and the Caribbean Soil Partnership to contribute to sustainable management of soil. SISLAC includes data from 49 084 soil profiles distributed unevenly across the continent, making it the region’s largest soil database. In addition, there are other soil databases in the region with about 40 000 soil profiles that can be integrated into SISLAC and improve it. However, some problems hinder its usages, such as the quality of the data and their high dimensionality. The objective of this research is evaluate the quality of the SISLAC data and the other available soil databases to generate a new improved version that meets the minimum quality requirements to be used for different purposes or practical applications. The results show that 15 % of the existing soil profiles had an inaccurate description of the diagnostic horizons and 17 % of the additional profiles already existed in SISLAC; therefore, a total of 32 % of profiles were excluded for these two reasons. Further correction of an additional 4.5 % of existing inconsistencies improved overall data quality. The improved database consists of 66 746 profiles and is available for public use at https://doi.org/10.5281/zenodo.7876731 (Díaz-Guadarrama and Guevara, 2023). This revised version of SISLAC data offers the opportunity to generate information that helps decision-making on issues in which soils are a decisive factor. It can also be used to plan future soil surveys in areas with low density or where updated information is required. MenosSpatial soil databases can help model complex phenomena in which soils are a decisive factor – for example, evaluating agricultural potential or estimating carbon storage capacity. The Latin America and Caribbean Soil Information System, SISLAC, is a regional initiative promoted by the Food and Agriculture Organization’s (FAO) Latin America and the Caribbean Soil Partnership to contribute to sustainable management of soil. SISLAC includes data from 49 084 soil profiles distributed unevenly across the continent, making it the region’s largest soil database. In addition, there are other soil databases in the region with about 40 000 soil profiles that can be integrated into SISLAC and improve it. However, some problems hinder its usages, such as the quality of the data and their high dimensionality. The objective of this research is evaluate the quality of the SISLAC data and the other available soil databases to generate a new improved version that meets the minimum quality requirements to be used for different purposes or practical applications. The results show that 15 % of the existing soil profiles had an inaccurate description of the diagnostic horizons and 17 % of the additional profiles already existed in SISLAC; therefore, a total of 32 % of profiles were excluded for these two reasons. Further correction of an additional 4.5 % of existing inconsistencies improved overall data quality. The improved database consists of 66 746 profiles and is available for public use a... Mostrar Tudo |
Palavras-Chave: |
Carbono orgânico do solo; Digital soil mapping; Mapeamento digital do solo; SISLAC. |
Thesagro: |
Sistema de Informação; Solo. |
Thesaurus NAL: |
Information systems; Soil organic carbon. |
Categoria do assunto: |
P Recursos Naturais, Ciências Ambientais e da Terra |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/doc/1146420/1/Improving-the-Latin-America-and-Caribbean-Soil-Information-System-2024.pdf
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Marc: |
LEADER 03885naa a2200733 a 4500 001 2146420 005 2024-03-19 008 2024 bl uuuu u00u1 u #d 024 7 $ahttps://doi.org/10.5194/essd-16-1229-2024$2DOI 100 1 $aDÍAZ-GUADARRAMA, S. 245 $aImproving the Latin America and Caribbean Soil Information System (SISLAC) database enhances its usability and scalability$h[electronic resource] 260 $c2024 520 $aSpatial soil databases can help model complex phenomena in which soils are a decisive factor – for example, evaluating agricultural potential or estimating carbon storage capacity. The Latin America and Caribbean Soil Information System, SISLAC, is a regional initiative promoted by the Food and Agriculture Organization’s (FAO) Latin America and the Caribbean Soil Partnership to contribute to sustainable management of soil. SISLAC includes data from 49 084 soil profiles distributed unevenly across the continent, making it the region’s largest soil database. In addition, there are other soil databases in the region with about 40 000 soil profiles that can be integrated into SISLAC and improve it. However, some problems hinder its usages, such as the quality of the data and their high dimensionality. The objective of this research is evaluate the quality of the SISLAC data and the other available soil databases to generate a new improved version that meets the minimum quality requirements to be used for different purposes or practical applications. The results show that 15 % of the existing soil profiles had an inaccurate description of the diagnostic horizons and 17 % of the additional profiles already existed in SISLAC; therefore, a total of 32 % of profiles were excluded for these two reasons. Further correction of an additional 4.5 % of existing inconsistencies improved overall data quality. The improved database consists of 66 746 profiles and is available for public use at https://doi.org/10.5281/zenodo.7876731 (Díaz-Guadarrama and Guevara, 2023). This revised version of SISLAC data offers the opportunity to generate information that helps decision-making on issues in which soils are a decisive factor. It can also be used to plan future soil surveys in areas with low density or where updated information is required. 650 $aInformation systems 650 $aSoil organic carbon 650 $aSistema de Informação 650 $aSolo 653 $aCarbono orgânico do solo 653 $aDigital soil mapping 653 $aMapeamento digital do solo 653 $aSISLAC 700 1 $aVARÓN-RAMÍREZ, V. M. 700 1 $aLIZARAZO, I. 700 1 $aGUEVARA, M. 700 1 $aANGELINI, M. 700 1 $aARAUJO-CARRILLO, G. A. 700 1 $aARGEÑAL, J. 700 1 $aARMAS, D. 700 1 $aBALTA, R. A. 700 1 $aBOLIVAR, A. 700 1 $aBUSTAMANTE, N. 700 1 $aDART, R. de O. 700 1 $aDELL AQUA, M. 700 1 $aENCINA, A. 700 1 $aFIGUEREDO, H. 700 1 $aFONTES, F. 700 1 $aGUTIÉRREZ-DIAZ, J. S. 700 1 $aJIMÉNEZ, W. 700 1 $aLAVADO, R. S. 700 1 $aBACA, J. F. M. 700 1 $aMENDONÇA-SANTOS, M. de L. 700 1 $aMORETTI, L. M. 700 1 $aMUÑOZ, I. D. 700 1 $aOLIVERA, C. 700 1 $aOLMEDO, G. 700 1 $aOMUTO, C. 700 1 $aORTIZ, S. 700 1 $aPASCALE, C. 700 1 $aPFEIFFER, M. 700 1 $aRAMOS, I. A. 700 1 $aRÍOS, D. 700 1 $aRIVERA, R. 700 1 $aRODRÍGUEZ, L. M. 700 1 $aRODRÍGUEZ, D. M. 700 1 $aROSALES, A. 700 1 $aROSALES, K. 700 1 $aSCHULZ, G. 700 1 $aSEVILLA, V. 700 1 $aTENTI, L. M. 700 1 $aVARGAS, R. 700 1 $aVASQUES, G. M. 700 1 $aYIGINI, Y. 700 1 $aRUBIANO, Y. 773 $tEarth System Science Data$gv. 16, n. 3, p. 1229-1246, 2024.
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