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2. | | CANTOU, G.; ROEL, A.; IRISARRI, P.; TARLERA, S.; FERNÁNDEZ, A. Estimation of methane and nitrous oxideo emisions from rice field in Uruguay ln: International Soil Tillage Research Organization (ISTRO) Conference, 19., 2012, Montevideo, Uruguay Montevideo (Uruguay): ISTRO, 2012. Trabajo 202 "Material en soporte electrónico; CD 114" International Soil Tillage Research OrganizationBiblioteca(s): INIA Treinta y Tres. |
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4. | | CANTOU, G.; CAPURRO, M.C.; ROEL, A.; IRISARRI, P.; TARLERA, S.; FERNÁNDEZ, A. Cuantificación de las emisiones de metano y óxido nitroso en el cultivo de arroz. In: PROGRAMA NACIONAL PRODUCCIÓN DE ARROZ; JORNADA ANUAL ARROZ, 2012, INIA TREINTA Y TRES, UY. Arroz: resultados experimentales 2011-2012. Treinta y Tres: INIA, 2012. Cap. 2 p.25-33. (INIA Serie Actividades de Difusión; 686)Biblioteca(s): INIA Treinta y Tres. |
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5. | | CAPURRO, M.C.; CANTOU, G.; ROEL, A.; IRISARRI, P.; TARLERA, S.; FERNÁNDEZ, A.; RICCETTO, S. Cuantificación de las emisiones de metano y óxido nitroso en el cultivo de arroz In: PROGRAMA NACIONAL PRODUCCIÓN DE ARROZ; JORNADA ANUAL ARROZ-SOJA, 2013, INIA TREINTA Y TRES, UY. Arroz-soja: resultados experimentales 2012-2013. Treinta y Tres: INIA, 2013. cap. 2, p. 7-9 (INIA Serie Actividades de Difusión ; 713)Biblioteca(s): INIA La Estanzuela; INIA Tacuarembó; INIA Treinta y Tres. |
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7. | | PEREYRA, V.; TARLERA, S.; URRABURU, M.; FERNÁNDEZ, A.; TERRA, J.; IRISARRI, P. Emisiones de metano y óxido nitroso en la rotación arroz-pastura en el este uruguayo. In: Congreso Argentino de la Ciencia del Suelo. (22º, 2010, Rosario, Argentina), AACS, 2010.Biblioteca(s): INIA Treinta y Tres. |
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8. | | IRISARRI, P.; PEREYRA, V.; FERNÁNDEZ, A.; TERRA, J.A.; TARLERA, S. CH4 and N2O Emissions in a Rice Field: First Measurements in the Uruguayan Productive System. [Emisiones de CH4 y N2O en un arrozal: primeras medidas en el sistema productivo uruguayo]. [Special Issue 25 Years Agrociencia]. Plant Biology. Agrociencia Uruguay, 2022, vol. 26, NE2, e1083. doi: https://doi.org/10.31285/AGRO.26.1083 -- OPEN ACCESS. Article history: Article originally published in: Agrociencia (Uruguay). 2012;16(2):1-10. doi: https://doi.org/10.31285/AGRO.17.533 -- Correspondence: Silvana Tarlera,
starlera@fq.edu.uy -- Special Issue 25 Years Agrociencia. -- License:...Biblioteca(s): INIA Las Brujas. |
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10. | | CAPURRO, M.C.; RICCETTO, S.; TARLERA, S.; IRISARRI, P.; FERNÁNDEZ, A.; CANTOU, G.; ROEL, A. Irrigation management and greenhouse gas emissions in Uruguayan rice production systems: abstract. Agrociencia Uruguay, v. 19, special issue "Inter-Regional CIGR Conference on Land and Water Challenges, 3., La Estanzuela, Colonia, UY. Tools for developing; "Dr. Mario García Petillo"", p. 60, 2015. En versión electrónica difiere la paginación: Agrociencia Uruguay, v. 19, special issue, p. 64, 2015.Biblioteca(s): INIA La Estanzuela. |
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12. | | TARLERA, S.; CAPURRO, M.C.; IRISARRI, P.; FERNÁNDEZ SCAVINO, A.; CANTOU, G.; ROEL, A. Yield-scaled global potential of two irrigation management systems in a highly productive rice systems. Scientia Agricola, 2016, v. 73, no. 1 p. 43-50. Article history: Received February 06, 2015; accepted June 05, 2015; published 2016.Biblioteca(s): INIA Treinta y Tres. |
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13. | | MARTÍNEZ, A.; OREGGIONI, D.; FERRANDO, L.; FERNÁNDEZ, A.; ILLARZE, G.; IRISARRI, P.; SALVO, L.; TERRA, J.A.; TARLERA, S. Emisión de metano en distintos sistemas arroceros del este uruguayo. [Resumen]. In: Libro de resúmenes de las TERCERAS JORNADAS INTERDISCIPLINARIAS EN BIODIVERSIDAD Y ECOLOGIA. "Desafíos socio-ambientales para el Uruguay del futuro" 28 de Noviembre a 2 de Diciembre 2016, Centro Universitario Regional del Este Rocha, Uruguay. p.113.Biblioteca(s): INIA Las Brujas. |
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14. | | TARLERA, S.; GONNET, S.; IRISARRI, P.; MENES, J.; FERNÁNDEZ, A.; PAOLINO, G.; TRAVERS, D.; DEAMBROSI, E.; Méndez-Vilas, A. (Ed.). Nitrification and denitrification associated with N2O production in a temperate N-fertilized irrigated uruguayan rice field. In: Modern multidisciplinary applied microbiology: Exploiting microbes and their interactions, 2008, Reino Unido: Wiley-VCH Verlag. p.416-420Biblioteca(s): INIA Treinta y Tres. |
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15. | | CHIRINDA, N.; ARENAS, L.; KATTO, M.; LOAIZA, S.; CORREA, F.; ISTHITANI, M.; LOBOGUERRERO, A.M.; MARTÍNEZ-BARÓN, D.; GRATEROL, E.; JARAMILLO, S.; TORRES, C.F.; ARANGO, M.; GUZMÁN, M.; AVILA, I.; HUBE, S.; KURTZ, D.B.; ZORRILLA DE SAN MARTÍN, G.; TERRA, J.A.; IRISARRI, P.; TARLERA, S.; LAHUE, G.; BUENO SCIVITTARO, W.; NOGUERA, A.; BAYER, C. Sustainable and low greenhouse gas emitting rice production in Latin America and the Caribbean: a review on the transition from ideality to reality. Sustainability, March 2018, v.10, no. 671. 16 p. Article history: Received: 24 November 2017// Accepted: 23 February 2018// Published: 1 March 2018.
OPEN ACCESS.Biblioteca(s): INIA Treinta y Tres. |
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Registros recuperados : 15 | |
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Registro completo
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Biblioteca (s) : |
INIA Treinta y Tres. |
Fecha actual : |
01/02/2016 |
Actualizado : |
11/10/2019 |
Tipo de producción científica : |
Artículos en Revistas Indexadas Internacionales |
Circulación / Nivel : |
A - A |
Autor : |
TARLERA, S.; CAPURRO, M.C.; IRISARRI, P.; FERNÁNDEZ SCAVINO, A.; CANTOU, G.; ROEL, A. |
Afiliación : |
SILVANA TARLERA, FACULTAD DE QUÍMICA, UDELAR, UY.; MARIA CRISTINA CAPURRO BAZZANO, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; PILAR IRISARRI, FACULTAD DE AGRONOMÍA, UDELAR, UY.; ANA FERNÀNDEZ SCAVINO, FACULTAD DE QUÍMICA, UDELAR, UY.; MARIA GUILLERMINA CANTOU MAYOL, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; ALVARO ROEL DELLAZOPPA, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay. |
Título : |
Yield-scaled global potential of two irrigation management systems in a highly productive rice systems. |
Fecha de publicación : |
2016 |
Fuente / Imprenta : |
Scientia Agricola, 2016, v. 73, no. 1 p. 43-50. |
ISSN : |
1678-992X |
DOI : |
10.1590/0103-9016-2015-0050 |
Idioma : |
Inglés |
Notas : |
Article history: Received February 06, 2015; accepted June 05, 2015; published 2016. |
Contenido : |
Abstract:
Water management impacts both methane (CH4) and nitrous oxide (N2O) emissions from rice paddy fields. Although controlled irrigation is one of the most important tools for reducing CH4emission in rice production systems it can also increase N2O emissions and reduce crop yields. Over three years, CH4 and N2O emissions were measured in a rice field in Uruguay under two different irrigation management systems, using static closed chambers: conventional water management (continuous flooding after 30 days of emergence, CF30); and an alternative system (controlled deficit irrigation allowing for wetting and drying, AWDI). AWDI showed mean cumulative CH4 emission values of 98.4 kg CH4 ha−1, 55 % lower compared to CF30, while no differences in nitrous oxide emissions were observed between treatments ( p > 0.05). No yield differences between irrigation systems were observed in two of the rice seasons ( p > 0.05) while AWDI promoted yield reduction in one of the seasons ( p< 0.05). When rice yield and greenhouse gases (GHG) emissions were considered together, the AWDI irrigation system allowed for lower yield-scaled total global warming potential (GWP). Higher irrigation water productivity was achieved under AWDI in two of the three rice seasons. These findings suggest that AWDI could be an option for reducing GHG emissions and increasing irrigation water productivity. However, AWDI may compromise grain yield in certain years, reflecting the importance of the need for fine tuning of this irrigation strategy and an assessment of the overall tradeoff between relationships in order to promote its adoption by farmers. MenosAbstract:
Water management impacts both methane (CH4) and nitrous oxide (N2O) emissions from rice paddy fields. Although controlled irrigation is one of the most important tools for reducing CH4emission in rice production systems it can also increase N2O emissions and reduce crop yields. Over three years, CH4 and N2O emissions were measured in a rice field in Uruguay under two different irrigation management systems, using static closed chambers: conventional water management (continuous flooding after 30 days of emergence, CF30); and an alternative system (controlled deficit irrigation allowing for wetting and drying, AWDI). AWDI showed mean cumulative CH4 emission values of 98.4 kg CH4 ha−1, 55 % lower compared to CF30, while no differences in nitrous oxide emissions were observed between treatments ( p > 0.05). No yield differences between irrigation systems were observed in two of the rice seasons ( p > 0.05) while AWDI promoted yield reduction in one of the seasons ( p< 0.05). When rice yield and greenhouse gases (GHG) emissions were considered together, the AWDI irrigation system allowed for lower yield-scaled total global warming potential (GWP). Higher irrigation water productivity was achieved under AWDI in two of the three rice seasons. These findings suggest that AWDI could be an option for reducing GHG emissions and increasing irrigation water productivity. However, AWDI may compromise grain yield in certain years, reflecting the importance of the need for ... Presentar Todo |
Palabras claves : |
EMISIONES DE METANO; EMISIONES DE ÓXIDO NITROSO; EMISSIONS; GREENHOUSE GASES; METHANE; MITIGATION; NITROUS OXIDE. |
Thesagro : |
ARROZ; GASES DE EFECTO INVERNADERO; MANEJO DEL AGUA; RIEGO. |
Asunto categoría : |
P01 Conservación de la naturaleza y recursos de La tierra |
URL : |
http://www.ainfo.inia.uy/digital/bitstream/item/5473/1/Capurro-arb-2016-1.pdf
|
Marc : |
LEADER 02708naa a2200349 a 4500 001 1054246 005 2019-10-11 008 2016 bl uuuu u00u1 u #d 022 $a1678-992X 024 7 $a10.1590/0103-9016-2015-0050$2DOI 100 1 $aTARLERA, S. 245 $aYield-scaled global potential of two irrigation management systems in a highly productive rice systems.$h[electronic resource] 260 $c2016 500 $aArticle history: Received February 06, 2015; accepted June 05, 2015; published 2016. 520 $aAbstract: Water management impacts both methane (CH4) and nitrous oxide (N2O) emissions from rice paddy fields. Although controlled irrigation is one of the most important tools for reducing CH4emission in rice production systems it can also increase N2O emissions and reduce crop yields. Over three years, CH4 and N2O emissions were measured in a rice field in Uruguay under two different irrigation management systems, using static closed chambers: conventional water management (continuous flooding after 30 days of emergence, CF30); and an alternative system (controlled deficit irrigation allowing for wetting and drying, AWDI). AWDI showed mean cumulative CH4 emission values of 98.4 kg CH4 ha−1, 55 % lower compared to CF30, while no differences in nitrous oxide emissions were observed between treatments ( p > 0.05). No yield differences between irrigation systems were observed in two of the rice seasons ( p > 0.05) while AWDI promoted yield reduction in one of the seasons ( p< 0.05). When rice yield and greenhouse gases (GHG) emissions were considered together, the AWDI irrigation system allowed for lower yield-scaled total global warming potential (GWP). Higher irrigation water productivity was achieved under AWDI in two of the three rice seasons. These findings suggest that AWDI could be an option for reducing GHG emissions and increasing irrigation water productivity. However, AWDI may compromise grain yield in certain years, reflecting the importance of the need for fine tuning of this irrigation strategy and an assessment of the overall tradeoff between relationships in order to promote its adoption by farmers. 650 $aARROZ 650 $aGASES DE EFECTO INVERNADERO 650 $aMANEJO DEL AGUA 650 $aRIEGO 653 $aEMISIONES DE METANO 653 $aEMISIONES DE ÓXIDO NITROSO 653 $aEMISSIONS 653 $aGREENHOUSE GASES 653 $aMETHANE 653 $aMITIGATION 653 $aNITROUS OXIDE 700 1 $aCAPURRO, M.C. 700 1 $aIRISARRI, P. 700 1 $aFERNÁNDEZ SCAVINO, A. 700 1 $aCANTOU, G. 700 1 $aROEL, A. 773 $tScientia Agricola, 2016$gv. 73, no. 1 p. 43-50.
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