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1.
Mar Pollut Bull ; 63(5-12): 195-200, 2011.
Article in English | MEDLINE | ID: mdl-21700300

ABSTRACT

Submarine groundwater discharge (SGD) on the reef flat of Bolinao, Pangasinan (Philippines) was mapped using electrical resistivity, 222Rn, and nutrient concentration measurements. Nitrate levels as high as 126 µM, or 1-2 orders of magnitude higher than ambient concentrations, were measured in some areas of the reef flat. Nutrient fluxes were higher during the wet season (May-October) than the dry season (November-April). Dissolved inorganic nitrogen (DIN=NO3+NO2+NH4) and soluble reactive phosphorus (SRP) fluxes during the wet season were 4.4 and 0.2 mmoles m(-2) d(-1), respectively. With the increase population size and anthropogenic activities in Bolinao, an enhancement of SGD-derived nitrogen levels is likely. This could lead to eutrophic conditions in the otherwise oligotrophic waters surrounding the Santiago reef flat.


Subject(s)
Coral Reefs , Fresh Water/chemistry , Nitrogen/analysis , Phosphorus/analysis , Seawater/chemistry , Water Pollutants, Chemical/analysis , Environmental Monitoring , Philippines
2.
Mar Pollut Bull ; 63(5-12): 243-8, 2011.
Article in English | MEDLINE | ID: mdl-21397917

ABSTRACT

Herein we present results from one of the first extensive bay-wide oceanographic surveys of Manila Bay, wherein 31 stations were sampled during the northeast monsoon (cold and dry season). A band of hypoxic bottom water (dissolved oxygen<2.8 mg/L) spanned the midsection of the bay from east to west. Bottom nitrate concentrations (5.7-16.8 µM; avg. 11.1 µM) and total organic carbon values in sediments (1.7-3.1%; avg. 2.4%) were high in the midsection, which coincided with the band of hypoxic bottom water. Physical processes and site-specific accumulation of organic material likely lead to hypoxic conditions in Manila Bay, even during the northeast monsoon period when the water column is relatively well mixed. The results of this study complement the previously reported widespread hypoxia that occurs during the rainy season. Thus, hypoxia may be pervasive in the bay throughout the year, although it varies in intensity and spatial extent.


Subject(s)
Eutrophication , Seawater/chemistry , Water Pollution/analysis , Weather , Chlorophyll/analysis , Chlorophyll A , Environmental Monitoring , Geologic Sediments/chemistry , Oceans and Seas , Oxygen/analysis , Philippines , Salinity , Seasons , Temperature , Water Pollution/statistics & numerical data
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