one publication added to basket [224488] | Quantitative aspects of inorganic nutrient fluxes in the Gazi Bay (Kenya): implications for coastal ecosystems
Mwashote, B. M.; Jumba, I. O. (2002). Quantitative aspects of inorganic nutrient fluxes in the Gazi Bay (Kenya): implications for coastal ecosystems. Mar. Pollut. Bull. 44: 1194-1205 In: Marine Pollution Bulletin. Macmillan: London. ISSN 0025-326X; e-ISSN 1879-3363, more | |
Keywords | | Author keywords | Gazi bay, nutrient sources, benthic fluxes, fluvial discharge, community production, coastal ecosystems |
Authors | | Top | - Mwashote, B. M.
- Jumba, I. O.
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Abstract | Fluxes of dissolved inorganic nutrients: NH+4 , NO_2 , NO_3 , PO3_4 and Si(OH)4 from nearshore sediments of Gazi Bay were measured in situ within mangrove, seagrass and coral reef biotopes using benthic flux bell-jar chambers of cross-sectional area 0.066 m2 and volume 0.0132 m3. The objectives were: (1) to determine the influence of benthic fluxes, fluvial discharge and seasonal variations on the nutrient budget in the Bay waters; (2) to determine the effect of tidal and spatial variations on nutrient loads in the water column and (3) to establish the relative importance of the nutrient sources with regard to total community production of the Bay. The directly measured fluxes ranged from -270 to +148 µmol NH+ 4 –N/m2/h; -60 to +63 µmol NO_2–N/m2/h; -79 to +41 µmol NO_ 3 –N/m2/h; -79 to +75 µmol PO3_ 4 –P/m2/h and +30 to +350 µmol Si(OH)4–Si/m2/h for and respectively. It was established that benthic fluxes are the major sources of dissolved inorganic NH+ 4 , NO_ 2 and Si(OH)4 while fluvial sources are important for NO_ 3 and PO3_ 4 into Gazi Bay waters. Seasonal variations had an appreciable effect on the PO3_ 4 fluxes, N:Si ratio, river nutrient discharge, plankton productivity and important environmental factors such as salinity and temperature. Tidal and spatial variations had no significant effect on nutrient concentrations and net fluxes within the water column. The results imply that benthic fluxes are largely responsible for the nutrient dynamics of the nearshore coastal ecosystems especially where direct terrestrial inputs do not contribute significantly to the nutrient budget. |
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