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Determinación del habitat potencialmente utilizable por la especie Salmo trutta en un tramo del río Lozoya, España

EZEQUIEL GARCIA RODRIGUEZ Polioptro Martinez-Austria diego Garcia de Jalon LUIS ARMANDO OCHOA FRANCO (2009, [Artículo])

En el presente trabajo se efectúa la estimación del hábitat potencialmente utilizable y del caudal que lo maximiza para los estadios de vida adulto, juvenil, alevín y freza de la especie Salmo trutta (trucha común), especie muy apreciada en la pesca deportiva y para el consumo humano. Para tal fin, de acuerdo con la metodología IFIM (Instream Flow Incremental Methodology), se efectuó la simulación del hábitat físico fluvial de un tramo de 609 m del río Lozoya (Madrid, España) utilizando un modelo bidimensional de la hidrodinámica, un modelo para la simulación del hábitat y los modelos de preferencia de hábitat de la especie antes mencionada.

Ingeniería Hidráulica en México (0186-4076), 24(1) Ecosistemas fluviales Curva caudal-habitat Hidrodinámica fluvial Simulación INGENIERÍA Y TECNOLOGÍA

Precise irrigation water and nitrogen management improve water and nitrogen use efficiencies under conservation agriculture in the maize-wheat systems

Mahesh Gathala ML JAT (2023, [Artículo])

A 3-year field experiment was setup to address the threat of underground water depletion and sustainability of agrifood systems. Subsurface drip irrigation (SDI) system combined with nitrogen management under conservation agriculture-based (CA) maize-wheat system (MWS) effects on crop yields, irrigation water productivity (WPi), nitrogen use efficiency (NUE) and profitability. Grain yields of maize, wheat, and MWS in the SDI with 100% recommended N were significantly higher by 15.8%, 5.2% and 11.2%, respectively, than conventional furrow/flood irrigation (CT-FI) system. System irrigation water savings (~ 55%) and the mean WPi were higher in maize, wheat, and MWS under the SDI than CT-FI system. There was saving of 25% of fertilizer N in maize and MWS whereas no saving of N was observed in wheat. Net returns from MWS were significantly higher (USD 265) under SDI with 100% N (with no subsidy) than CT-FI system despite with higher cost of production. The net returns were increased by 47% when considering a subsidy of 80% on laying SDI system. Our results showed a great potential of complementing CA with SDI and N management to maximize productivity, NUE, and WPi, which may be economically beneficial and environmentally sound in MWS in Trans-IGP of South Asia.

Subsurface Drip Irrigation Nitrogen Management Irrigation Water Productivity Water Savings CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA IRRIGATION WATER NITROGEN-USE EFFICIENCY CONSERVATION AGRICULTURE MAIZE WHEAT