Please use this identifier to cite or link to this item: https://doi.org/10.2166/wst.2010.357
Title: Modelling the effect of atmospheric nitrogen deposition on marine phytoplankton in the Singapore Strait
Authors: Sundarambal, P. 
Tkalich, P. 
Balasubramanian, R. 
Keywords: Atmospheric depositions
Eutrophication
Nutrients fluxes
Singapore Strait
Water quality model
Issue Date: 2010
Source: Sundarambal, P., Tkalich, P., Balasubramanian, R. (2010). Modelling the effect of atmospheric nitrogen deposition on marine phytoplankton in the Singapore Strait. Water Science and Technology 61 (4) : 859-867. ScholarBank@NUS Repository. https://doi.org/10.2166/wst.2010.357
Abstract: Atmospheric deposition is an important source of nutrients to the ocean, potentially stimulating primary production, but its relative effect on coastal eutrophication remains largely unknown. This paper presents data generated by the 3-D modelling program NEUTRO to assess the proportion of atmospheric nutrient fluxes, allowing a quantification of the relative contribution of atmospheric and ocean fluxes in the Singapore Strait. This work included an assessment of the importance of high concentration episodic inputs of nitrate-nitrogen associated with transport of polluted air onto the surface water. The NEUTRO model features a nutrient-fuelled food web composed of nutrients, plankton, and dissolved oxygen dynamics. Model simulations show that atmospheric deposition fluxes alone might contribute nitrate-nitrogen mass up to 15% into the Singapore Strait. This amount might be a significant contributor toward regional eutrophication when the system is under nutrient-depleted conditions. Model calibrations for temporal and spatial variability of nutrients qualitatively and quantitatively agreed with available measurements. © IWA Publishing 2010.
Source Title: Water Science and Technology
URI: http://scholarbank.nus.edu.sg/handle/10635/75299
ISSN: 02731223
DOI: 10.2166/wst.2010.357
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