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10. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | VIEIRA, L. M. R.; NASCIMENTO, C. J. do; PACHECO, F.; ROCHA, A.; LOURENÇO, R.; MENDONÇA, J.; BRITTO, E. O desempenho da economia baiana em 2003. Bahia Análise e Dados, Salvador, v.13, n.3, p.575-589, 2003. Biblioteca(s): Embrapa Semiárido. |
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12. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | DUBEUF, J. -P.; CHOISIS, J. -P.; RUBINO, R.; TOUSSAINT, G. -C.; BOUTONNET, J. -P.; FALAGAN, A.; OREGI, L.; LIGIOS, S.; PACHECO, F.; ROCHON, J. -J. Situation and outlooks of the dairy sheep and goat production systems in the Euro-Mediterranean area: the results of the monitoring body of the FAO/CIHEAM network. In: INTERNATIONAL CONFERENCE ON GOATS, 7., 2000, Tours, Poitiers, France. Proceedings... Paris: INRA: IGA: Institut de Elevage, 2000. v. 1, p. 321-323. Biblioteca(s): Embrapa Caprinos e Ovinos. |
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13. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | GREENSTREET, L.; FAN, J.; PACHECO, F. S.; BAI, Y.; UMMUS, M. E.; DORIA, C.; BARROS, N. O.; FORSBERG, B. R.; XU, X.; FLECKER, A.; GOMES, C. Detecting aquaculture with deep learning in a low-data setting. In: SIGKDD FRAGILE EARTH WORKSHOP, 2023, Long Beach. Biblioteca(s): Embrapa Pesca e Aquicultura. |
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14. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | MOTA, P. K.; COSTA, A. M. da; PRADO, R. B.; FERNANDES, L. F. S.; PISSARRA, T. C. T.; PACHECO, F. A. L. Payment for environmental services: a critical review of schemes, concepts, and practice in Brazil. Science of the Total Environment, v. 899, 165639, Nov. 2023. Biblioteca(s): Embrapa Solos. |
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15. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | SALIS, H. H. C. de; COSTA, A. M. da; VIANA, J. H. M.; SCHULER, A. E.; KÜNNE, A.; FERNANDES, L. F. S.; PACHECO, F. A. L. Hydrologic modeling for sustainable water resources management in urbanized Karst areas. International Journal of Environmental Research and Public Health, v. 16, n. 14, article 2542, 2019. Biblioteca(s): Embrapa Milho e Sorgo; Embrapa Solos. |
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16. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | TENENWURCEL, M. A.; MOURA, M. S. de; COSTA, A. M. da; MOTA, P. K.; VIANA, J. H. M.; FERNANDES, L. F. S.; PACHECO, F. A. L. An improved model for the evaluation of groundwater recharge based on the concept of conservative use potential: a study in the river Pandeiros Watershed, Minas Gerais, Brazil. Water, v. 12, article 1001, 2020. Biblioteca(s): Embrapa Milho e Sorgo. |
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17. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | MAULI, M. M.; NOBREGA, L. H. P.; SOUZA FILHO, A. P. da S.; STEIN, L. D. do N.; SILVA, C. T. A. C.; PACHECO, F. P. Seeds germination and early development of beggartick on extracted soil solution from an area with cover crops. African Journal of Agricultural research, v. 10, n. 32, p. 3123-3133, Aug. 2015. Biblioteca(s): Embrapa Amazônia Oriental. |
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18. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | CALDAS, A. M.; PISSARA, T. C. T.; COSTA, R. C. A.; ROLIM NETO, F. C.; ZANATA, M.; PARAHYBA, R. da B. V.; FERNANDES, L. F. S.; PACHECO, F. A. L. Flood vulnerability, environmental land use conflicts, and conservation of soil and water: a study in the Batatais SP municipality, Brazil. Water, v. 10, n. 10, article 1357, 2018. Biblioteca(s): Embrapa Solos. |
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19. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | DOUSSEAU, S.; RODRIGUES, A. C.; LIRA, J. M. S.; RIBEIRO JUNIOR, P. M.; PACHECO, F. V.; ALVARENGA, A. A. de; RESENDE, M. L. V.; PAULA, A. C. C. F. D. de. Aplicação exógena de quitosana no sistema antioxidante de jaborandi. Ciência Rural, Santa Maria, v. 46, n. 1, p. 191-197, jan. 2016. Biblioteca(s): Embrapa Semiárido. |
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20. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | VIEIRA, I. F. B.; ROLIM NETO, F. C.; CARVALHO, M. N.; CALDAS, A. M.; COSTA, R. C. A.; SILVA, K. S. da; PARAHYBA, R. da B. V.; PACHECO, F. A. L.; FERNANDES, L. F. S.; PISSARRA, T. C. T. Water security assessment of groundwater quality in an anthropized rural area from the Atlantic Forest Biome in Brazil. Water, v. 12, n. 3, 623, 2020. Biblioteca(s): Embrapa Solos. |
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Registros recuperados : 20 | |
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Registro Completo
Biblioteca(s): |
Embrapa Milho e Sorgo. |
Data corrente: |
05/11/2019 |
Data da última atualização: |
24/01/2020 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 2 |
Autoria: |
COSTA, A. M. da; SALIS, H. H. C. de; VIANA, J. H. M.; PACHECO, F. A. L. |
Afiliação: |
Adriana Monteiro da Costa, UFMG; Hugo Henrique Cardoso de Salis, UFMG; JOAO HERBERT MOREIRA VIANA, CNPMS; Fernando António Leal Pacheco, University of Trás-os-Montes and Alto Douro. |
Título: |
Groundwater recharge potential for sustainable water use in urban areas of the Jequitiba River basin, Brazil. |
Ano de publicação: |
2019 |
Fonte/Imprenta: |
Sustainability, v. 11, n. 10, article 2955, 2019. |
DOI: |
10.3390/su11102955 |
Idioma: |
Inglês |
Conteúdo: |
The zoning of groundwater recharge potential would be attractive for water managers, but is lacking in many regions around the planet, including in the Jequitiba River basin, Minas Gerais, Brazil. In this study, a physically based spatially distributed method to evaluate groundwater recharge potential at catchment scale was developed and tested in the aforementioned Jequitiba River basin. The data for the test was compiled from institutional sources and implemented in a Geographic Information System. It comprised meteorological, hydrometric, relief, land use, and soil data. The average results resembled the annual recharge calculated by a hydrograph method, which worked as validation method. The spatial variation of recharge highlighted the predominant contribution of flat areas, porous aquifers, and forested regions to groundwater recharge. They also exposedthenegativeeffectofurbanization. Incombination,thesefactorselectedthefollowingsectors of the Jequitiba River basin as regions of high recharge potential: the south-southeast part of the headwaters in Prudente de Morais; Sete Lagoas towards the central part of the basin; and the region between Funilândia and Jequitiba, near the Jequitiba river mouth. Some management practices were suggested to improve groundwater recharge. The map of groundwater recharge potential produced in this study is valuable and is therefore proposed as tool for planners in the sustainable use of groundwater and protection of recharge areas. MenosThe zoning of groundwater recharge potential would be attractive for water managers, but is lacking in many regions around the planet, including in the Jequitiba River basin, Minas Gerais, Brazil. In this study, a physically based spatially distributed method to evaluate groundwater recharge potential at catchment scale was developed and tested in the aforementioned Jequitiba River basin. The data for the test was compiled from institutional sources and implemented in a Geographic Information System. It comprised meteorological, hydrometric, relief, land use, and soil data. The average results resembled the annual recharge calculated by a hydrograph method, which worked as validation method. The spatial variation of recharge highlighted the predominant contribution of flat areas, porous aquifers, and forested regions to groundwater recharge. They also exposedthenegativeeffectofurbanization. Incombination,thesefactorselectedthefollowingsectors of the Jequitiba River basin as regions of high recharge potential: the south-southeast part of the headwaters in Prudente de Morais; Sete Lagoas towards the central part of the basin; and the region between Funilândia and Jequitiba, near the Jequitiba river mouth. Some management practices were suggested to improve groundwater recharge. The map of groundwater recharge potential produced in this study is valuable and is therefore proposed as tool for planners in the sustainable use of groundwater and protection of recharge a... Mostrar Tudo |
Thesagro: |
Bacia Hidrográfica; Geologia; Política; Recurso Hídrico; Uso da Terra. |
Categoria do assunto: |
P Recursos Naturais, Ciências Ambientais e da Terra |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/item/204280/1/Groundwater-recharge.pdf
|
Marc: |
LEADER 02202naa a2200229 a 4500 001 2113922 005 2020-01-24 008 2019 bl uuuu u00u1 u #d 024 7 $a10.3390/su11102955$2DOI 100 1 $aCOSTA, A. M. da 245 $aGroundwater recharge potential for sustainable water use in urban areas of the Jequitiba River basin, Brazil.$h[electronic resource] 260 $c2019 520 $aThe zoning of groundwater recharge potential would be attractive for water managers, but is lacking in many regions around the planet, including in the Jequitiba River basin, Minas Gerais, Brazil. In this study, a physically based spatially distributed method to evaluate groundwater recharge potential at catchment scale was developed and tested in the aforementioned Jequitiba River basin. The data for the test was compiled from institutional sources and implemented in a Geographic Information System. It comprised meteorological, hydrometric, relief, land use, and soil data. The average results resembled the annual recharge calculated by a hydrograph method, which worked as validation method. The spatial variation of recharge highlighted the predominant contribution of flat areas, porous aquifers, and forested regions to groundwater recharge. They also exposedthenegativeeffectofurbanization. Incombination,thesefactorselectedthefollowingsectors of the Jequitiba River basin as regions of high recharge potential: the south-southeast part of the headwaters in Prudente de Morais; Sete Lagoas towards the central part of the basin; and the region between Funilândia and Jequitiba, near the Jequitiba river mouth. Some management practices were suggested to improve groundwater recharge. The map of groundwater recharge potential produced in this study is valuable and is therefore proposed as tool for planners in the sustainable use of groundwater and protection of recharge areas. 650 $aBacia Hidrográfica 650 $aGeologia 650 $aPolítica 650 $aRecurso Hídrico 650 $aUso da Terra 700 1 $aSALIS, H. H. C. de 700 1 $aVIANA, J. H. M. 700 1 $aPACHECO, F. A. L. 773 $tSustainability$gv. 11, n. 10, article 2955, 2019.
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Embrapa Milho e Sorgo (CNPMS) |
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