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      Un modelo biogeoquímico para el Golfo de Nicoya, Costa Rica

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          Abstract

          De acuerdo con el "modelo de dos cajas de Broecker y Peng", se desarrolló un modelo de balance biogeoquímico del Golfo de Nicoya, considerando dos reservorios de nutrientes: aguas superficiales y aguas profundas. La zona de mezcla se ubicó en promedio a los 20 m de profundidad y se consideró que existe un balance entre las aguas superficiales que van hacia el fondo y un sistema de surgencia que lleva nutrientes y otros elementos químicos del fondo a la superficie. La principal fuente de nitrógeno, en forma de iones de nitrato, es el aporte terrígeno a través de las desembocaduras del Tempisque y el Tárcoles. El Golfo de Nicoya es una fuente neta de Nitrógeno Inorgánico Disuelto (NID) con una disponibilidad estimada en 87 x 10³ mol día-1 en época seca; mientras que en la época lluviosa incrementa a 3 044 x 10³ mol día-1. Para el Fósforo Inorgánico Disuelto (FID) se estimó en 27 mol día-1 en época seca y en 207 mol día-1 en época lluviosa. La dinámica de estos nutrientes biolimitados, referida a las variaciones estacionales a través de sus aportes por lixiviación, coincide con los procesos biológicos informados para el Golfo de Nicoya, como variación en los niveles de productividad primaria, y épocas de madurez y reproducción de especies de ciclo de vida corto y largo.

          Translated abstract

          A biogeochemical model for the Gulf of Nicoya, Costa Rica. In agreement with the Broecker and Penn two-boxes model, I generated a biogeochemical balance model for the Gulf of Nicoya (Guanacaste, Costa Rica) using two nutrient reservoirs: surface water and deep water. The mixing zone was located at a depth of 20 m. There is a balance between surface waters descending to the bottom and upwelling waters that carry nutrients and other chemical elements to the surface. The main source of nitrogen (nitrate), was the outlet of the Tempisque and Tárcoles rivers. The Gulf of Nicoya is a net source of Dissolved Inorganic Nitrogen (DIN) with an availability rate of 87 x 10³ mol day-1 in the dry season and 3 044 x 10³ mol day-1 in the rainy season. Dissolved Inorganic Phosphate (DIP) was estimated in 27 mol day-1 in the dry season and 207 mol day-¹ in the rainy season. The dynamics of these biolimited nutrients, in relation to runoff seasonal variations, fits the biological processes reported for the gulf, for example, for variations in primary productivity levels, and maturity and reproduction seasons for species with short and long life cycles. Rev. Biol. Trop. 55 (1): 33-42. Epub 2007 March. 31.

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          Most cited references36

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          A new model for the role of the oceans in determining atmospheric PCO2

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            Inverse Methods in Global Biogeochemical Cycles

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              The Physical Oceanography of the Gulf of Nicoya, Costa Rica, a Tropical Estuary

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                Author and article information

                Contributors
                Role: ND
                Journal
                rbt
                Revista de Biología Tropical
                Rev. biol. trop
                Universidad de Costa Rica (San José )
                0034-7744
                March 2007
                : 55
                : 1
                : 33-42
                Affiliations
                [1 ] Universidad Nacional
                Article
                S0034-77442007000100005
                c49a3065-c311-4e4c-ba49-560c0c875624

                http://creativecommons.org/licenses/by/4.0/

                History
                Product

                SciELO Costa Rica

                Self URI (journal page): http://www.scielo.sa.cr/scielo.php?script=sci_serial&pid=0034-7744&lng=en
                Categories
                Biodiversity Conservation
                Biology

                General life sciences,Animal science & Zoology
                tropical,estuary,nutrients,biogeochemical model,Nicoya Gulf,Costa Rica,trópico,estuario,nutrientes,modelo biogeoquímico,Golfo de Nicoya

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