Application of Seaweed Cultivation to the Bioremediation of Nutrient-Rich Effluent
A seaweed biofilter/production system is being developed to reduce the environmental impact of marine fish farm effluent in coastal ecosystems as a part of an integrated aquaculture system. Several known seaweed taxa and their cultivars have been considered as candidate biofilter organisms based on...
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Veröffentlicht in: | Algae (Korean Phycological Society) 2002, 17(3), , pp.187-194 |
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Sprache: | eng |
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Zusammenfassung: | A seaweed biofilter/production system is being developed to reduce the environmental impact of marine fish farm effluent in coastal ecosystems as a part of an integrated aquaculture system. Several known seaweed taxa and their cultivars have been considered as candidate biofilter organisms based on their species-specific physiological properties such as nutrient uptake kinetics and their economic value. Porphyra is an excellent candidate and shows efficient nutrient extraction properties. Rates of ammonium uptake were maintained at around 3 mu moles times g times dw super(-1) times min super(-1) at 150 mu M inorganic nitrogen at 10 degree C. Ulva is another possible biofilter candidate with an uptake rate of 1.9 mu moles times g times dw super(-1) times min super(-1) under same conditions. A simple uptake/growth and harvest model was applied to estimate the efficiency of the biofilter/production system. The model was deterministic and used a compartment model structure based on difference equations. The efficiency of Porpyra filter was estimated over 17% of NH sub(4) super(+) removal from the continuous supply of 100 mu mol times l super(-1) NH sub(4) super(+) at 100 l times sec super(-1) flow rate. |
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ISSN: | 1226-2617 2093-0860 |
DOI: | 10.4490/ALGAE.2002.17.3.187 |